|
|
(3 intermediate revisions by the same user not shown) |
Line 8: |
Line 8: |
| <link rel="stylesheet" href="https://2018.igem.org/wiki/index.php?title=Template:DLUT_China_B/css/fontawesome.css&action=raw&ctype=text/css"> | | <link rel="stylesheet" href="https://2018.igem.org/wiki/index.php?title=Template:DLUT_China_B/css/fontawesome.css&action=raw&ctype=text/css"> |
| <link rel="stylesheet" href="https://2018.igem.org/wiki/index.php?title=Template:DLUT_China_B/css/contents.css&action=raw&ctype=text/css"> | | <link rel="stylesheet" href="https://2018.igem.org/wiki/index.php?title=Template:DLUT_China_B/css/contents.css&action=raw&ctype=text/css"> |
| + | <link rel="stylesheet" href="https://2018.igem.org/wiki/index.php?title=Template:DLUT_China_B/css/notebook.css&action=raw&ctype=text/css"> |
| </head> | | </head> |
| <body> | | <body> |
Line 13: |
Line 14: |
| <div id="moduleHeader"> | | <div id="moduleHeader"> |
| <div id="nav"></div> | | <div id="nav"></div> |
− | <br>
| + | <div id="background" class="notebook"></div> |
− | <div class="moduleTitle">Project</div> | + | <div class="moduleTitle">Notebook</div> |
− | <div class="subModule"> | + | |
− | <span>Notebook</span>
| + | |
− | </div>
| + | |
| </div> | | </div> |
| | | |
| <div id="mainBody"> | | <div id="mainBody"> |
− | <nav id="contents"></nav> | + | <div id="contents"></div> |
| <div id="article"> | | <div id="article"> |
| <div class="mainText"> | | <div class="mainText"> |
Line 27: |
Line 25: |
| used in the direct method we used, the following experimental procedures were obtained.</p> | | used in the direct method we used, the following experimental procedures were obtained.</p> |
| </div> | | </div> |
| + | <h2 class="title">Liquid Crystal Debugging Experiment</h2> |
| <div> | | <div> |
− | <h2 class="title">Experimental Procedure Ⅰ</h2> | + | <div> |
− | <div class="mainText">
| + | <h2 class="title">Experimental Procedure Ⅰ</h2> |
− | <h3 class="title">Pretreatment</h3>
| + | <div class="mainText"> |
− | <p>Prepare 5% Decon 90 cleaning solution, stir, pour into the slide pool, soak the slides overnight;
| + | <h3 class="title">Pretreatment</h3> |
− | pour off the overnight cleaning solution, shake it with deionized water to achieve the purpose
| + | <p>Prepare 5% Decon 90 cleaning solution, stir, pour into the slide pool, soak the slides |
− | of washing, repeat 10 times; reload The ionized water was rinsed in the ultrasonic for 15 min
| + | overnight; |
− | and repeated twice; the tweezers were clamped on one end of the slide and washed with deionized
| + | pour off the overnight cleaning solution, shake it with deionized water to achieve the |
− | water for 3 times, and dried with nitrogen, placed in an oven for 20 min, and taken out in a dry
| + | purpose |
− | slide pool. Dustproof and spare.</p>
| + | of washing, repeat 10 times; reload the ionized water was rinsed in the ultrasonic for 15 |
− | <h3 class="title">Self-assembly of the upper and lower slides</h3>
| + | min |
− | <p>DMOAP self-assembly of the upper slide: The cleaned slide is immersed in a 0.2% (v/v) DMOAP
| + | and repeated twice; the tweezers were clamped on one end of the slide and washed with |
− | aqueous solution, allowed to stand at room temperature for half an hour, rinsed with deionized
| + | deionized |
− | water, dried by N<sub>2</sub>, and dried at 110℃ for 1 h. Dustproof and spare.</p>
| + | water for 3 times, and dried with nitrogen, placed in an oven for 20 min, and taken out in a |
− | <p>APTES/DMOAP hybrid self-assembly of the lower slide: Immerse the cleaned slide in 3% (v/v) APTES
| + | dry |
− | and 1% (v/v) DMOAP in 10 mmol/L acetic acid-sodium acetate solution (pH =5) The solution was
| + | slide pool. Dustproof and spare.</p> |
− | incubated at 80℃ for 2 h, rinsed with deionized water, dried with N<sub>2</sub>, dried at 110℃ for 1 h,
| + | <h3 class="title">Self-assembly of the upper and lower slides</h3> |
− | then immersed in 1% (v/v) GA solution for 37 h at 37℃. Ion water rinse, N<sub>2</sub> blow dry, dustproof
| + | <p>DMOAP self-assembly of the upper slide: The cleaned slide is immersed in a 0.2% (v/v) DMOAP |
− | and spare.</p>
| + | aqueous solution, allowed to stand at room temperature for half an hour, rinsed with |
− | <h3 class="title">Fixation of Nanobodies</h3>
| + | deionized |
− | <p>The Nanobody was dissolved in 0.01 mol/L of PBS buffer (pH=7.4) and configured to have different
| + | water, dried by N<sub>2</sub>, and dried at 110℃ for 1 h. Dustproof and spare.</p> |
− | concentrations of the Nanobody solution. Appropriate amount of Nano-antibody solution was added
| + | <p>APTES/DMOAP hybrid self-assembly of the lower slide: Immerse the cleaned slide in 3% (v/v) |
− | dropwise to the surface of the lower slide, and reacted at 37℃ for 2 h. After removal, it was
| + | APTES |
− | washed with 0.01 mol/L PBS buffer (pH=7.4) and deionized water to remove unfixed Nanobody
| + | and 1% (v/v) DMOAP in 10 mmol/L acetic acid-sodium acetate solution (pH =5) The solution was |
− | molecules. N<sub>2</sub> is blown dry, placed at -20℃ for freezing or dustproof at room temperature.</p>
| + | incubated at 80℃ for 2 h, rinsed with deionized water, dried with N<sub>2</sub>, dried at |
− | <h3 class="title">Production of liquid crystal cell</h3>
| + | 110℃ for 1 h, |
− | <p>The treated upper and lower slides were assembled face to face, and the slides were separated by
| + | then immersed in 1% (v/v) GA solution for 37 h at 37℃. Ion water rinse, N<sub>2</sub> blow |
− | Mylar polyester sheets (intermediate open convex cavity), and the other three sides were fixed
| + | dry, dustproof |
− | with small clips except for the opening direction. A small amount of liquid crystal is injected
| + | and spare.</p> |
− | into the liquid crystal cell from the opening by capillary action, and the liquid crystal is
| + | <h3 class="title">Fixation of Nanobodies</h3> |
− | filled with the entire cavity, and then observed by a polarizing microscope. And record the
| + | <p>The Nanobody was dissolved in 0.01 mol/L of PBS buffer (pH=7.4) and configured to have |
− | image results.</p>
| + | different |
| + | concentrations of the Nanobody solution. Appropriate amount of Nano-antibody solution was |
| + | added |
| + | dropwise to the surface of the lower slide, and reacted at 37℃ for 2 h. After removal, it |
| + | was |
| + | washed with 0.01 mol/L PBS buffer (pH=7.4) and deionized water to remove unfixed Nanobody |
| + | molecules. N<sub>2</sub> is blown dry, placed at -20℃ for freezing or dustproof at room |
| + | temperature.</p> |
| + | <h3 class="title">Production of liquid crystal cell</h3> |
| + | <p>The treated upper and lower slides were assembled face to face, and the slides were separated |
| + | by |
| + | Mylar polyester sheets (intermediate open convex cavity), and the other three sides were |
| + | fixed |
| + | with small clips except for the opening direction. A small amount of liquid crystal is |
| + | injected |
| + | into the liquid crystal cell from the opening by capillary action, and the liquid crystal is |
| + | filled with the entire cavity, and then observed by a polarizing microscope. And record the |
| + | image results.</p> |
| + | </div> |
| </div> | | </div> |
− | </div>
| |
| | | |
− | <div>
| + | <div> |
− | <h2 class="title">Optimization of Experimental Conditions</h2>
| + | <h2 class="title">Optimization of Experimental Conditions</h2> |
− | <div class="mainText">
| + | <div class="mainText"> |
− | <h3 class="title time">Explore the appropriate antibody concentration</h3>
| + | <h3 class="title time">Explore the appropriate antibody concentration</h3> |
− | <p>Time:</p>
| + | <p>Time:</p> |
− | <ul>
| + | <ul> |
− | <li>20 July: Antibody concentration 50ng/ml. Antibody concentration 200ng/ml.</li>
| + | <li>20 July: Antibody concentration 50ng/ml. Antibody concentration 200ng/ml.</li> |
− | <li>21 July: Antibody concentration 500ng/ml. Antibody concentration 1000ng/ml.</li>
| + | <li>21 July: Antibody concentration 500ng/ml. Antibody concentration 1000ng/ml.</li> |
− | <li>30 July: Antibody concentration 1ng/ml. Antibody concentration 10ng/ml. Antibody
| + | <li>30 July: Antibody concentration 1ng/ml. Antibody concentration 10ng/ml. Antibody |
− | concentration 50ng/ml.
| + | concentration 50ng/ml. |
− | </li>
| + | </li> |
− | </ul>
| + | </ul> |
− | <p>Since the antibody itself has a corresponding perturbation effect on the liquid crystal, in order
| + | <p>Since the antibody itself has a corresponding perturbation effect on the liquid crystal, in |
− | to avoid the influence of the nano-antibody perturbation effect on the experimental results, we
| + | order |
− | carried out an experiment to determine the appropriate concentration of the antibody, and we
| + | to avoid the influence of the nano-antibody perturbation effect on the experimental results, |
− | selected 50 ng/mL, 500 ng/mL, 1000 ng/mL, 2000 ng/mL antibody respectively. The concentration
| + | we |
− | was tested and three parallel experimental groups were set for each concentration. Parallel
| + | carried out an experiment to determine the appropriate concentration of the antibody, and we |
− | light and conical light were used for observation. The parallel light observation results (Fig.
| + | selected 50 ng/mL, 500 ng/mL, 1000 ng/mL, 2000 ng/mL antibody respectively. The |
− | 1) were all black, indicating that the liquid crystal remained vertical.</p>
| + | concentration |
− | <table class="img">
| + | was tested and three parallel experimental groups were set for each concentration. Parallel |
− | <tr>
| + | light and conical light were used for observation. The parallel light observation results |
− | <td><a href=""><img src=""></a></td>
| + | (Fig. |
− | <td><a href=""><img src=""></a></td>
| + | 1) were all black, indicating that the liquid crystal remained vertical.</p> |
− | <td><a href=""><img src=""></a></td>
| + | <table class="img"> |
− | <td><a href=""><img src=""></a></td>
| + | <tr> |
− | </tr>
| + | <td><a href=""><img src=""></a></td> |
− | </table>
| + | <td><a href=""><img src=""></a></td> |
− | <p class="footnote">Parallel light observations at 50 ng/mL, 200 ng/mL, 500 ng/mL and 1000 ng/mL</p>
| + | <td><a href=""><img src=""></a></td> |
− | <p class="footnote"><b>Figure 1</b> Effect of antigen concentration gradient on liquid crystal
| + | <td><a href=""><img src=""></a></td> |
− | alignment</p>
| + | </tr> |
− | <p>Since the experimental results did not result in antibody concentrations that caused the liquid
| + | </table> |
− | crystals to align in parallel and cause color changes, we continued to increase the
| + | <p class="footnote">Parallel light observations at 50 ng/mL, 200 ng/mL, 500 ng/mL and 1000 |
− | concentration for experiments. Experiments were performed at 1 ng/mL and 10 ng/mL to obtain the
| + | ng/mL</p> |
− | results of parallel light. Parallel light observations still show all black, and cross-contrast
| + | <p class="footnote"><b>Figure 1</b> Effect of antigen concentration gradient on liquid crystal |
− | observations have crosshairs. It is indicated that the liquid crystals are still mostly arranged
| + | alignment</p> |
− | vertically. The critical concentration for changing the liquid crystal from the vertical
| + | <p>Since the experimental results did not result in antibody concentrations that caused the |
− | alignment to the parallel alignment was not found, but it was found that the antibody
| + | liquid |
− | concentration of 10 ng/mL or less did not cause a change in the color of the liquid crystal.</p>
| + | crystals to align in parallel and cause color changes, we continued to increase the |
− | <table class="img">
| + | concentration for experiments. Experiments were performed at 1 ng/mL and 10 ng/mL to obtain |
− | <tr>
| + | the |
− | <td><a href=""><img src=""></a></td>
| + | results of parallel light. Parallel light observations still show all black, and |
− | <td><a href=""><img src=""></a></td>
| + | cross-contrast |
− | </tr>
| + | observations have crosshairs. It is indicated that the liquid crystals are still mostly |
− | </table>
| + | arranged |
− | <p class="footnote">Parallel light observations at antibody concentrations of 1 ng/mL and 10
| + | vertically. The critical concentration for changing the liquid crystal from the vertical |
− | ng/mL</p>
| + | alignment to the parallel alignment was not found, but it was found that the antibody |
− | <p class="footnote"><b>Figure 2</b> Effect of high antibody concentration on liquid crystal
| + | concentration of 10 ng/mL or less did not cause a change in the color of the liquid |
− | alignment</p>
| + | crystal.</p> |
| + | <table class="img"> |
| + | <tr> |
| + | <td><a href=""><img src=""></a></td> |
| + | <td><a href=""><img src=""></a></td> |
| + | </tr> |
| + | </table> |
| + | <p class="footnote">Parallel light observations at antibody concentrations of 1 ng/mL and 10 |
| + | ng/mL</p> |
| + | <p class="footnote"><b>Figure 2</b> Effect of high antibody concentration on liquid crystal |
| + | alignment</p> |
| | | |
− | <h3 class="title time">Explore the appropriate antibody concentration</h3>
| + | <h3 class="title time">Explore the appropriate antibody concentration</h3> |
− | <p>Time:</p>
| + | <p>Time:</p> |
− | <ul>
| + | <ul> |
− | <li>23 Aug: Antibody concentration 125ng/ml. Antibody concentration 2000ng/ml.</li>
| + | <li>23 Aug: Antibody concentration 125ng/ml. Antibody concentration 2000ng/ml.</li> |
− | </ul>
| + | </ul> |
− | <p>Since the preliminary experiment for exploring the appropriate antibody concentration did not
| + | <p>Since the preliminary experiment for exploring the appropriate antibody concentration did not |
− | find a critical value of the antibody concentration that can change the alignment of the liquid
| + | find a critical value of the antibody concentration that can change the alignment of the |
− | crystal, it is known from the search that the concentration of the antibody below 10 ng/mL does
| + | liquid |
− | not affect the liquid crystal alignment, so we refer to the literature and related research. It
| + | crystal, it is known from the search that the concentration of the antibody below 10 ng/mL |
− | is recommended by field personnel to select a concentration of 500 ng/mL as the initial antibody
| + | does |
− | concentration for detecting the antigen. Since the amount of antigen (β2-MG) in the urine of our
| + | not affect the liquid crystal alignment, so we refer to the literature and related research. |
− | current patients with chronic kidney disease is 125 ng/mL in unit conversion, we hope to
| + | It |
− | determine the optimal antibody critical concentration by antigen concentration so that the
| + | is recommended by field personnel to select a concentration of 500 ng/mL as the initial |
− | concentration is lower than 125 ng/mL. The antigen does not allow the liquid crystals to be
| + | antibody |
− | aligned in parallel, while antigens at concentrations above 125 ng/mL just align the liquid
| + | concentration for detecting the antigen. Since the amount of antigen (β<sub>2</sub>-MG) in |
− | crystals in parallel.</p>
| + | the urine of our |
− | <p>Therefore, our team selected 125 ng/mL, 1000 ng/mL and 2000 ng/mL antigen concentrations for
| + | current patients with chronic kidney disease is 125 ng/mL in unit conversion, we hope to |
− | experiments. The number of bright spots in 0.125 ng/mL-2 ng/mL parallel light images increased
| + | determine the optimal antibody critical concentration by antigen concentration so that the |
− | accordingly, but the overall color was black, and the difference was not large enough (Figure
| + | concentration is lower than 125 ng/mL. The antigen does not allow the liquid crystals to be |
− | 3). Not enough to determine the standard line of detection. (Note: due to 1000 ng/mL data file
| + | aligned in parallel, while antigens at concentrations above 125 ng/mL just align the liquid |
− | corruption, not shown in the figure)</p>
| + | crystals in parallel.</p> |
− | <table class="img">
| + | <p>Therefore, our team selected 125 ng/mL, 1000 ng/mL and 2000 ng/mL antigen concentrations for |
− | <tr>
| + | experiments. The number of bright spots in 0.125 ng/mL-2 ng/mL parallel light images |
− | <td><a href=""><img src=""></a></td>
| + | increased |
− | <td><a href=""><img src=""></a></td>
| + | accordingly, but the overall color was black, and the difference was not large enough |
− | </tr>
| + | (Figure |
− | </table>
| + | 3). Not enough to determine the standard line of detection. (Note: due to 1000 ng/mL data |
− | <p class="footnote">Parallel light observations at antigen concentrations of 125 ng/mL and 2000
| + | file |
− | ng/mL</p>
| + | corruption, not shown in the figure)</p> |
− | <p class="footnote"><b>Figure 3</b> Effect of antigen concentration on liquid crystal alignment</p>
| + | <table class="img"> |
| + | <tr> |
| + | <td><a href=""><img src=""></a></td> |
| + | <td><a href=""><img src=""></a></td> |
| + | </tr> |
| + | </table> |
| + | <p class="footnote">Parallel light observations at antigen concentrations of 125 ng/mL and 2000 |
| + | ng/mL</p> |
| + | <p class="footnote"><b>Figure 3</b> Effect of antigen concentration on liquid crystal alignment |
| + | </p> |
| | | |
− | <h3 class="title time">DMOAP interference exclusion experiment</h3>
| + | <h3 class="title time">DMOAP interference exclusion experiment</h3> |
− | <p>Time:</p>
| + | <p>Time:</p> |
− | <ul>
| + | <ul> |
− | <li>25 Aug: Antibody concentration 500ng/ml.</li>
| + | <li>25 Aug: Antibody concentration 500ng/ml.</li> |
− | </ul>
| + | </ul> |
− | <p>Since the previous experiments used high antibody concentration or high antigen concentration,
| + | <p>Since the previous experiments used high antibody concentration or high antigen |
− | the liquid crystals could not be arranged in parallel to discolor the observation. We reflect on
| + | concentration, |
− | whether the concentration of DMOAP in the experiment has an interference effect on the
| + | the liquid crystals could not be arranged in parallel to discolor the observation. We |
− | experimental results. Since DMOAP plays a role in inducing the vertical alignment of liquid
| + | reflect on |
− | crystals in the experiment, the reason for the analysis may be that DMOAP leads to the failure
| + | whether the concentration of DMOAP in the experiment has an interference effect on the |
− | to obtain ideal experimental results. So we chose 0.2%, 0.4%, 0.6%, 0.8% DMOAP concentration,
| + | experimental results. Since DMOAP plays a role in inducing the vertical alignment of liquid |
− | and the antibody concentration was still 500 ng/mL. The DMOAP concentration was different, and
| + | crystals in the experiment, the reason for the analysis may be that DMOAP leads to the |
− | the number of bright spots in the parallel light image was different (Fig. 4). From 0.8% to 0.2%
| + | failure |
− | concentration, the main body of the image is black, but the number of bright spots is
| + | to obtain ideal experimental results. So we chose 0.2%, 0.4%, 0.6%, 0.8% DMOAP |
− | significantly increased. The number of bright spots is much higher at 0.2%; the number of bright
| + | concentration, |
− | spots on the image is less at 0.8%, which is equivalent to the previous 1% concentration.</p>
| + | and the antibody concentration was still 500 ng/mL. The DMOAP concentration was different, |
− | <table class="img">
| + | and |
− | <tr>
| + | the number of bright spots in the parallel light image was different (Fig. 4). From 0.8% to |
− | <td><a href=""><img src=""></a></td>
| + | 0.2% |
− | <td><a href=""><img src=""></a></td>
| + | concentration, the main body of the image is black, but the number of bright spots is |
− | <td><a href=""><img src=""></a></td>
| + | significantly increased. The number of bright spots is much higher at 0.2%; the number of |
− | <td><a href=""><img src=""></a></td>
| + | bright |
− | </tr>
| + | spots on the image is less at 0.8%, which is equivalent to the previous 1% |
− | </table>
| + | concentration.</p> |
− | <p class="footnote">Parallel light observations at DMOAP concentrations of 0.2%, 0.4%, 0.6%, and
| + | <table class="img"> |
− | 0.8%</p>
| + | <tr> |
− | <p class="footnote"><b>Figure 4</b> Effect of DMOAP concentration on liquid crystal alignment</p>
| + | <td><a href=""><img src=""></a></td> |
− | <p>Since the experimental results are not ideal, we consider re-selecting the experimental protocol.
| + | <td><a href=""><img src=""></a></td> |
− | After consulting the literature and discussing with the professional researchers in the field,
| + | <td><a href=""><img src=""></a></td> |
− | we decided to use the competition method. The following is the experimental plan.</p>
| + | <td><a href=""><img src=""></a></td> |
| + | </tr> |
| + | </table> |
| + | <p class="footnote">Parallel light observations at DMOAP concentrations of 0.2%, 0.4%, 0.6%, and |
| + | 0.8%</p> |
| + | <p class="footnote"><b>Figure 4</b> Effect of DMOAP concentration on liquid crystal alignment |
| + | </p> |
| + | <p>Since the experimental results are not ideal, we consider re-selecting the experimental |
| + | protocol. |
| + | After consulting the literature and discussing with the professional researchers in the |
| + | field, |
| + | we decided to use the competition method. The following is the experimental plan.</p> |
| + | </div> |
| </div> | | </div> |
− | </div>
| |
| | | |
− | <div>
| + | <div> |
− | <h2 class="title">Experimental Procedure Ⅱ</h2>
| + | <h2 class="title">Experimental Procedure Ⅱ</h2> |
− | <div class="mainText">
| + | <div class="mainText"> |
− | <h3 class="title">Pretreatment</h3>
| + | <h3 class="title">Pretreatment</h3> |
− | <p>Prepare 5% Decon 90 (5ml Decon 90+95ml water) cleaning solution, stir, pour into the slide pool,
| + | <p>Prepare 5% Decon 90 (5ml Decon 90+95ml water) cleaning solution, stir, pour into the slide |
− | soak the slides overnight; pour off the overnight cleaning solution, shake it with deionized
| + | pool, |
− | water to achieve the purpose of washing, repeat 10 times; reload The ionized water was rinsed in
| + | soak the slides overnight; pour off the overnight cleaning solution, shake it with deionized |
− | the ultrasonic for 15 min and repeated twice; the tweezers were clamped on one end of the slide
| + | water to achieve the purpose of washing, repeat 10 times; reload The ionized water was |
− | and washed with deionized water for 3 times, and dried with nitrogen, placed in an oven for 20
| + | rinsed in |
− | min, and taken out in a dry slide pool. Dustproof and spare.</p>
| + | the ultrasonic for 15 min and repeated twice; the tweezers were clamped on one end of the |
− | <h3 class="title">Self-assembly of the upper and lower slides</h3>
| + | slide |
− | <p>DMOAP self-assembly of the upper slide: The cleaned slide is immersed in a 0.2% (v/v) DMOAP
| + | and washed with deionized water for 3 times, and dried with nitrogen, placed in an oven for |
− | aqueous solution, allowed to stand at room temperature for half an hour, rinsed with deionized
| + | 20 |
− | water, dried by N<sub>2</sub>, and dried at 110℃ for 1 h. Dustproof and spare.</p>
| + | min, and taken out in a dry slide pool. Dustproof and spare.</p> |
− | <p>APTES/DMOAP hybrid self-assembly of the lower slide: Immerse the cleaned slide in 3% (v/v) APTES
| + | <h3 class="title">Self-assembly of the upper and lower slides</h3> |
− | and 1% (v/v) DMOAP in 10 mmol/L acetic acid-sodium acetate solution (pH =5) The solution was
| + | <p>DMOAP self-assembly of the upper slide: The cleaned slide is immersed in a 0.2% (v/v) DMOAP |
− | incubated at 80 °C for 2 h, rinsed with deionized water, dried with N<sub>2</sub>, dried at 110℃ for 1 h,
| + | aqueous solution, allowed to stand at room temperature for half an hour, rinsed with |
− | then immersed in 1% (v/v) GA solution for 37 h at 37℃. Ion water rinse, N<sub>2</sub> blow dry, dustproof
| + | deionized |
− | and spare.</p>
| + | water, dried by N<sub>2</sub>, and dried at 110℃ for 1 h. Dustproof and spare.</p> |
− | <h3 class="title">Immobilization of antigen</h3>
| + | <p>APTES/DMOAP hybrid self-assembly of the lower slide: Immerse the cleaned slide in 3% (v/v) |
− | <p>The antigen was dissolved in 0.01 mol/L of PBS buffer (pH = 7.4) and configured to have different
| + | APTES |
− | concentrations of the antigen solution. An appropriate amount of the antigen solution was added
| + | and 1% (v/v) DMOAP in 10 mmol/L acetic acid-sodium acetate solution (pH =5) The solution was |
− | dropwise to the surface of the lower slide and reacted at 37℃ for 2 h. After taking out, they
| + | incubated at 80 °C for 2 h, rinsed with deionized water, dried with N<sub>2</sub>, dried at |
− | were washed with 0.01 mol/L PBS buffer (pH=7.4) and deionized water, and the unfixed antigen
| + | 110℃ for 1 h, |
− | molecules were removed, dried with N<sub>2</sub> and stored at -20℃.</p>
| + | then immersed in 1% (v/v) GA solution for 37 h at 37℃. Ion water rinse, N<sub>2</sub> blow |
− | <h3 class="title">Production of liquid crystal cell</h3>
| + | dry, dustproof |
− | <p>The treated upper and lower slides were assembled face to face, and the slides were separated by
| + | and spare.</p> |
− | Mylar polyester sheets (intermediate open convex cavity), and the other three sides were fixed
| + | <h3 class="title">Immobilization of antigen</h3> |
− | with small clips except for the opening direction. A small amount of liquid crystal is injected
| + | <p>The antigen was dissolved in 0.01 mol/L of PBS buffer (pH = 7.4) and configured to have |
− | into the liquid crystal cell from the opening by capillary action, and the liquid crystal is
| + | different |
− | filled with the entire cavity, and then observed by a polarizing microscope. And record the
| + | concentrations of the antigen solution. An appropriate amount of the antigen solution was |
− | image results.</p>
| + | added |
− | <h3 class="title">Nanobody binds to immobilized antigen</h3>
| + | dropwise to the surface of the lower slide and reacted at 37℃ for 2 h. After taking out, |
− | <p>According to the competitive immunoassay method, an appropriate amount of a certain concentration
| + | they |
− | of the nano-antibody solution was sequentially added dropwise to the slide to which the antigen
| + | were washed with 0.01 mol/L PBS buffer (pH=7.4) and deionized water, and the unfixed antigen |
− | was immobilized, and reacted at 37℃ for 1 h. Rinse with 0.01 mol/L PBS buffer (pH=7.4) and
| + | molecules were removed, dried with N<sub>2</sub> and stored at -20℃.</p> |
− | deionized water to remove non-specific adsorbed substances, and dried with N<sub>2</sub>. A liquid crystal
| + | <h3 class="title">Production of liquid crystal cell</h3> |
− | cell was prepared according to the method (4), and a change in color and brightness of the
| + | <p>The treated upper and lower slides were assembled face to face, and the slides were separated |
− | liquid crystal film was observed using a polarizing microscope and image analysis was
| + | by |
− | performed.</p>
| + | Mylar polyester sheets (intermediate open convex cavity), and the other three sides were |
| + | fixed |
| + | with small clips except for the opening direction. A small amount of liquid crystal is |
| + | injected |
| + | into the liquid crystal cell from the opening by capillary action, and the liquid crystal is |
| + | filled with the entire cavity, and then observed by a polarizing microscope. And record the |
| + | image results.</p> |
| + | <h3 class="title">Nanobody binds to immobilized antigen</h3> |
| + | <p>According to the competitive immunoassay method, an appropriate amount of a certain |
| + | concentration |
| + | of the nano-antibody solution was sequentially added dropwise to the slide to which the |
| + | antigen |
| + | was immobilized, and reacted at 37℃ for 1 h. Rinse with 0.01 mol/L PBS buffer (pH=7.4) and |
| + | deionized water to remove non-specific adsorbed substances, and dried with N<sub>2</sub>. A |
| + | liquid crystal |
| + | cell was prepared according to the method (4), and a change in color and brightness of the |
| + | liquid crystal film was observed using a polarizing microscope and image analysis was |
| + | performed.</p> |
| + | </div> |
| </div> | | </div> |
− | </div>
| |
| | | |
− | <div>
| + | <div> |
− | <h2 class="title time">Experiment of Suitable Antigen Concentration</h2>
| + | <h2 class="title time">Experiment of Suitable Antigen Concentration</h2> |
− | <div class="mainText">
| + | <div class="mainText"> |
− | <p>Time:</p>
| + | <p>Time:</p> |
− | <ul>
| + | <ul> |
− | <li>30 Aug: Antigen concentration 500ng/ml; Antigen concentration 1000ng/ml; Antigen
| + | <li>30 Aug: Antigen concentration 500ng/ml; Antigen concentration 1000ng/ml; Antigen |
− | concentration 2000ng/ml; Antigen concentration 4000ng/ml.
| + | concentration 2000ng/ml; Antigen concentration 4000ng/ml. |
− | </li>
| + | </li> |
− | <li>2 Sept: Antigen concentration 100ng/ml; Antigen concentration 200ng/ml; Antigen
| + | <li>2 Sept: Antigen concentration 100ng/ml; Antigen concentration 200ng/ml; Antigen |
− | concentration 300ng/ml; Antigen concentration 400ng/ml.
| + | concentration 300ng/ml; Antigen concentration 400ng/ml. |
− | </li>
| + | </li> |
− | </ul>
| + | </ul> |
− | <p>We investigated the effect of antigens of different concentrations on the vertical alignment of
| + | <p>We investigated the effect of antigens of different concentrations on the vertical alignment |
− | liquid crystals without antibodies. The methods of antigen-antibody immobilization on glass were
| + | of |
− | collected from the literature of silkworm (crosslinked glutaraldehyde).The antigen was dissolved
| + | liquid crystals without antibodies. The methods of antigen-antibody immobilization on glass |
− | in 0.01 mol/L of PBS buffer (pH = 7.4) and configured to have
| + | were |
− | 0.1mg/L, 0.2mg/L, 0.3mg/L, 0.4mg/L, 0.5mg/L, 1mg/L, 2mg/L and 4mg/L of the antigen solution to have
| + | collected from the literature of silkworm (crosslinked glutaraldehyde).The antigen was |
− | experiments with 1% DMOAP. For details of subsequent treatment, please refer to the third step of
| + | dissolved |
− | competitive immunoassay method. Antigen concentration gradient is small in the first five groups
| + | in 0.01 mol/L of PBS buffer (pH = 7.4) and configured to have |
− | while antigen concentration gradient of the last three groups is big. Three parallel experiments
| + | 0.1mg/L, 0.2mg/L, 0.3mg/L, 0.4mg/L, 0.5mg/L, 1mg/L, 2mg/L and 4mg/L of the antigen solution |
− | were carried out in each group, and we chose the best picture to integrate them together. We
| + | to have |
− | observed bright spots separately under quadruple and tenfold objective. The specific results of
| + | experiments with 1% DMOAP. For details of subsequent treatment, please refer to the third |
− | the experiment are recorded as follows:</p>
| + | step of |
− | <table class="img">
| + | competitive immunoassay method. Antigen concentration gradient is small in the first five |
− | <tr>
| + | groups |
− | <td><a href=""><img src=""></a></td>
| + | while antigen concentration gradient of the last three groups is big. Three parallel |
− | <td><a href=""><img src=""></a></td>
| + | experiments |
− | <td><a href=""><img src=""></a></td>
| + | were carried out in each group, and we chose the best picture to integrate them together. We |
− | <td><a href=""><img src=""></a></td>
| + | observed bright spots separately under quadruple and tenfold objective. The specific results |
− | </tr>
| + | of |
− | <tr>
| + | the experiment are recorded as follows:</p> |
− | <td><a href=""><img src=""></a></td>
| + | <table class="img"> |
− | <td><a href=""><img src=""></a></td>
| + | <tr> |
− | <td><a href=""><img src=""></a></td>
| + | <td><a href=""><img src=""></a></td> |
− | <td><a href=""><img src=""></a></td>
| + | <td><a href=""><img src=""></a></td> |
− | </tr>
| + | <td><a href=""><img src=""></a></td> |
− | </table>
| + | <td><a href=""><img src=""></a></td> |
− | <p class="footnote">a. Images of 0.1mg/L, 0.2mg/mL, 0.3mg/L, 0.4mg/L, 0.5mg/L, 1mg/L, 2mg/L, 4mg/L
| + | </tr> |
− | of antigens in proper order under a quadruple objective</p>
| + | <tr> |
− | <table class="img">
| + | <td><a href=""><img src=""></a></td> |
− | <tr>
| + | <td><a href=""><img src=""></a></td> |
− | <td><a href=""><img src=""></a></td>
| + | <td><a href=""><img src=""></a></td> |
− | <td><a href=""><img src=""></a></td>
| + | <td><a href=""><img src=""></a></td> |
− | <td><a href=""><img src=""></a></td>
| + | </tr> |
− | <td><a href=""><img src=""></a></td>
| + | </table> |
− | </tr>
| + | <p class="footnote">a. Images of 0.1mg/L, 0.2mg/mL, 0.3mg/L, 0.4mg/L, 0.5mg/L, 1mg/L, 2mg/L, |
− | <tr>
| + | 4mg/L |
− | <td><a href=""><img src=""></a></td>
| + | of antigens in proper order under a quadruple objective</p> |
− | <td><a href=""><img src=""></a></td>
| + | <table class="img"> |
− | <td><a href=""><img src=""></a></td>
| + | <tr> |
− | <td><a href=""><img src=""></a></td>
| + | <td><a href=""><img src=""></a></td> |
− | </tr>
| + | <td><a href=""><img src=""></a></td> |
− | </table>
| + | <td><a href=""><img src=""></a></td> |
− | <p class="footnote">b. Images of 0.1mg/L, 0.2mg/mL, 0.3mg/L, 0.4mg/L, 0.5mg/L, 1mg/L, 2mg/L, 4mg/L
| + | <td><a href=""><img src=""></a></td> |
− | of antigens in proper order under a tenfold objective</p>
| + | </tr> |
− | <p>From the image, we can see that there is little difference among 0.1mg/L, 0.2mg/L and 0.3mg/L of
| + | <tr> |
− | antigens. It showed that the antigens in this concentration range have almost no effect on the
| + | <td><a href=""><img src=""></a></td> |
− | vertical alignment of liquid crystal. The number of bright spots increased, but not more
| + | <td><a href=""><img src=""></a></td> |
− | differences among 0.5mg/L-4mg/L. It suggested that the molecular weight of antigen may be too
| + | <td><a href=""><img src=""></a></td> |
− | small to affect the vertical alignment of liquid crystal. Therefore, the effect of antigens of
| + | <td><a href=""><img src=""></a></td> |
− | 0.5mg/L concentration on the vertical alignment of liquid crystals is good.</p>
| + | </tr> |
| + | </table> |
| + | <p class="footnote">b. Images of 0.1mg/L, 0.2mg/mL, 0.3mg/L, 0.4mg/L, 0.5mg/L, 1mg/L, 2mg/L, |
| + | 4mg/L |
| + | of antigens in proper order under a tenfold objective</p> |
| + | <p>From the image, we can see that there is little difference among 0.1mg/L, 0.2mg/L and 0.3mg/L |
| + | of |
| + | antigens. It showed that the antigens in this concentration range have almost no effect on |
| + | the |
| + | vertical alignment of liquid crystal. The number of bright spots increased, but not more |
| + | differences among 0.5mg/L-4mg/L. It suggested that the molecular weight of antigen may be |
| + | too |
| + | small to affect the vertical alignment of liquid crystal. Therefore, the effect of antigens |
| + | of |
| + | 0.5mg/L concentration on the vertical alignment of liquid crystals is good.</p> |
| + | </div> |
| </div> | | </div> |
− | </div>
| |
| | | |
− | <div>
| + | <div> |
− | <h2 class="title time">Experiment of Suitable Nanobody Concentration</h2>
| + | <h2 class="title time">Experiment of Suitable Nanobody Concentration</h2> |
− | <div class="mainText">
| + | <div class="mainText"> |
− | <p>Time:</p>
| + | <p>Time:</p> |
− | <ul>
| + | <ul> |
− | <li>8 Sept: Antigen concentration 500ng/ml, antibody concentration 500 ng/ml; Antigen
| + | <li>8 Sept: Antigen concentration 500ng/ml, antibody concentration 500 ng/ml; Antigen |
− | concentration 500ng/ml, antibody concentration 1000 ng/ml; Antigen concentration 500ng/ml,
| + | concentration 500ng/ml, antibody concentration 1000 ng/ml; Antigen concentration |
− | antibody concentration 1500 ng/ml; Antigen concentration 500ng/ml, antibody concentration
| + | 500ng/ml, |
− | 2000 ng/ml.
| + | antibody concentration 1500 ng/ml; Antigen concentration 500ng/ml, antibody |
− | </li>
| + | concentration |
− | <li>9 Sept: Antigen concentration 500ng/ml, antibody concentration 250 ng/ml; Antigen
| + | 2000 ng/ml. |
− | concentration 500ng/ml, antibody concentration 500 ng/ml.
| + | </li> |
− | </li>
| + | <li>9 Sept: Antigen concentration 500ng/ml, antibody concentration 250 ng/ml; Antigen |
− | <li>10 Sept: Antigen concentration 500ng/ml, antibody concentration 500 ng/ml.</li>
| + | concentration 500ng/ml, antibody concentration 500 ng/ml. |
− | </ul>
| + | </li> |
− | <p>After the experiment of suitable antigen concentration, we found that the effect of antigens of
| + | <li>10 Sept: Antigen concentration 500ng/ml, antibody concentration 500 ng/ml.</li> |
− | 0.5mg/L concentration on the vertical alignment of liquid crystals is good. Therefore, we take
| + | </ul> |
− | the concentration of antibody solution as 0.5mg/L as the premise to investigate suitable
| + | <p>After the experiment of suitable antigen concentration, we found that the effect of antigens |
− | nanobody concentration. An appropriate amount of 0.5mg/L, 1mg/L, 1.5mg/L and 0.5mg/L concentration
| + | of |
− | of the nano-antibody solution was sequentially added dropwise to the slide to which the antigen
| + | 0.5mg/L concentration on the vertical alignment of liquid crystals is good. Therefore, we |
− | was immobilized. For details of subsequent treatment, please refer to the fifth step of
| + | take |
− | competitive immunoassay method .Three parallel experiments were carried out in each group, and
| + | the concentration of antibody solution as 0.5mg/L as the premise to investigate suitable |
− | we chose the best picture to integrate them together under both quadruple and tenfold objective.
| + | nanobody concentration. An appropriate amount of 0.5mg/L, 1mg/L, 1.5mg/L and 0.5mg/L |
− | As the results are good, we intend to explore the lowest limit of antibody concentration by
| + | concentration |
− | immersion(Add the liquid to a clean Petri dish and immerse the slide in). The specific results
| + | of the nano-antibody solution was sequentially added dropwise to the slide to which the |
− | of the experiment are recorded as follows:</p>
| + | antigen |
− | <table class="img">
| + | was immobilized. For details of subsequent treatment, please refer to the fifth step of |
− | <tr>
| + | competitive immunoassay method .Three parallel experiments were carried out in each group, |
− | <td><a href=""><img src=""></a></td>
| + | and |
− | <td><a href=""><img src=""></a></td>
| + | we chose the best picture to integrate them together under both quadruple and tenfold |
− | <td><a href=""><img src=""></a></td>
| + | objective. |
− | <td><a href=""><img src=""></a></td>
| + | As the results are good, we intend to explore the lowest limit of antibody concentration by |
− | </tr>
| + | immersion(Add the liquid to a clean Petri dish and immerse the slide in). The specific |
− | </table>
| + | results |
− | <p class="footnote">a. Images of 0.5mg/L, 1mg/L, 1.5mg/L and 2mg/L of Nanobodys in proper order under
| + | of the experiment are recorded as follows:</p> |
− | a quadruple objective</p>
| + | <table class="img"> |
− | <table class="img">
| + | <tr> |
− | <tr>
| + | <td><a href=""><img src=""></a></td> |
− | <td><a href=""><img src=""></a></td>
| + | <td><a href=""><img src=""></a></td> |
− | <td><a href=""><img src=""></a></td>
| + | <td><a href=""><img src=""></a></td> |
− | </tr>
| + | <td><a href=""><img src=""></a></td> |
− | </table>
| + | </tr> |
− | <p class="footnote">b. Images of 0.5mg/L, 1mg/L, 1.5mg/L and 2mg/L of nano-bodys in proper order under
| + | </table> |
− | a quadruple objective</p>
| + | <p class="footnote">a. Images of 0.5mg/L, 1mg/L, 1.5mg/L and 2mg/L of Nanobodys in proper order |
− | <table class="img">
| + | under |
− | <tr>
| + | a quadruple objective</p> |
− | <td><a href=""><img src=""></a></td>
| + | <table class="img"> |
− | <td><a href=""><img src=""></a></td>
| + | <tr> |
− | </tr>
| + | <td><a href=""><img src=""></a></td> |
− | </table>
| + | <td><a href=""><img src=""></a></td> |
− | <p class="footnote">c. Images of 0.25mg/L and 0.5mg/L in proper order by immersion</p>
| + | </tr> |
| + | </table> |
| + | <p class="footnote">b. Images of 0.5mg/L, 1mg/L, 1.5mg/L and 2mg/L of nano-bodys in proper order |
| + | under |
| + | a quadruple objective</p> |
| + | <table class="img"> |
| + | <tr> |
| + | <td><a href=""><img src=""></a></td> |
| + | <td><a href=""><img src=""></a></td> |
| + | </tr> |
| + | </table> |
| + | <p class="footnote">c. Images of 0.25mg/L and 0.5mg/L in proper order by immersion</p> |
| + | </div> |
| </div> | | </div> |
− | </div>
| |
| | | |
− | <div>
| + | <div> |
− | <h2 class="title time">Verify Antigen Concentration Experiment</h2>
| + | <h2 class="title time">Verify Antigen Concentration Experiment</h2> |
− | <div class="mainText">
| + | <div class="mainText"> |
− | <p>Time:</p>
| + | <p>Time:</p> |
− | <ul>
| + | <ul> |
− | <li>12 Sept: Antigen concentration 1000ng/ml, antibody concentration 1000 ng/ml; Antigen
| + | <li>12 Sept: Antigen concentration 1000ng/ml, antibody concentration 1000 ng/ml; Antigen |
− | concentration 500ng/ml, antibody concentration 1000 ng/ml; Antigen concentration 62.5mg/L,
| + | concentration 500ng/ml, antibody concentration 1000 ng/ml; Antigen concentration |
− | antibody concentration 5000 ng/ml; Antigen concentration 62.5 mg/L, antibody concentration
| + | 62.5mg/L, |
− | 1000 ng/ml;Antigen concentration 31.25 mg/L, antibody concentration 500 ng/ml; Antigen
| + | antibody concentration 5000 ng/ml; Antigen concentration 62.5 mg/L, antibody |
− | concentration 31.25 mg/L, antibody concentration 1000 ng/ml.
| + | concentration |
− | </li>
| + | 1000 ng/ml;Antigen concentration 31.25 mg/L, antibody concentration 500 ng/ml; Antigen |
− | </ul>
| + | concentration 31.25 mg/L, antibody concentration 1000 ng/ml. |
− | <p>Due to the instability of the experimental results we have done before, we need to detect the
| + | </li> |
− | antigen concentration and antibody concentration, and use several extreme antigen concentrations
| + | </ul> |
− | to determine whether there is a problem with our antigen concentration. And considering the
| + | <p>Due to the instability of the experimental results we have done before, we need to detect the |
− | damage of the slide and the slide pool, in the self-assembly of the slide, the slide was dried
| + | antigen concentration and antibody concentration, and use several extreme antigen |
− | at 110℃ for 1 h and changed to dry at 80℃ for 1 h. At the same time, the antigen fixation
| + | concentrations |
− | process still adopts the method of soaking.</p>
| + | to determine whether there is a problem with our antigen concentration. And considering the |
− | <p>We changed the fixed antigen concentration to 1 mg/L and the corresponding antibody to 1000 ng/mL
| + | damage of the slide and the slide pool, in the self-assembly of the slide, the slide was |
− | (shown in Figure (5)a). Four parallel experiments were performed. We also made a fixed antigen
| + | dried |
− | to 62.5mg / L, 31.25mg / L, and explored the results of the two antigen concentrations, the
| + | at 110℃ for 1 h and changed to dry at 80℃ for 1 h. At the same time, the antigen fixation |
− | combined antibody was 500ng / ml and 1000 ng / ml (Figure (5) b, c, d, e), did four experiments,
| + | process still adopts the method of soaking.</p> |
− | four experiments in each group. Finally, we carried out the experimental results when the fixed
| + | <p>We changed the fixed antigen concentration to 1 mg/L and the corresponding antibody to 1000 |
− | antigen was 500 ng/mL and the antibody was 1000 ng/mL (shown in Figure (5)f). Two parallel
| + | ng/mL |
− | experiments were performed to determine whether there was a deviation in the results of our
| + | (shown in Figure (5)a). Four parallel experiments were performed. We also made a fixed |
− | previous experiments.</p>
| + | antigen |
− | <table class="img">
| + | to 62.5mg / L, 31.25mg / L, and explored the results of the two antigen concentrations, the |
− | <tr>
| + | combined antibody was 500ng / ml and 1000 ng / ml (Figure (5) b, c, d, e), did four |
− | <td><a href=""><img src=""></a></td>
| + | experiments, |
− | <td><a href=""><img src=""></a></td>
| + | four experiments in each group. Finally, we carried out the experimental results when the |
− | <td><a href=""><img src=""></a></td>
| + | fixed |
− | <td><a href=""><img src=""></a></td>
| + | antigen was 500 ng/mL and the antibody was 1000 ng/mL (shown in Figure (5)f). Two parallel |
− | </tr>
| + | experiments were performed to determine whether there was a deviation in the results of our |
− | </table>
| + | previous experiments.</p> |
− | <p class="footnote">a. Antigen concentration 1 mg/L, antibody concentration 1000 ng/mL result
| + | <table class="img"> |
− | image</p>
| + | <tr> |
− | <table class="img">
| + | <td><a href=""><img src=""></a></td> |
− | <tr>
| + | <td><a href=""><img src=""></a></td> |
− | <td><a href=""><img src=""></a></td>
| + | <td><a href=""><img src=""></a></td> |
− | <td><a href=""><img src=""></a></td>
| + | <td><a href=""><img src=""></a></td> |
− | <td><a href=""><img src=""></a></td>
| + | </tr> |
− | <td><a href=""><img src=""></a></td>
| + | </table> |
− | </tr>
| + | <p class="footnote">a. Antigen concentration 1 mg/L, antibody concentration 1000 ng/mL result |
− | </table>
| + | image</p> |
− | <p class="footnote">b. Antigen concentration 62.5 mg/L, antibody concentration 500 ng/mL result
| + | <table class="img"> |
− | image</p>
| + | <tr> |
− | <table class="img">
| + | <td><a href=""><img src=""></a></td> |
− | <tr>
| + | <td><a href=""><img src=""></a></td> |
− | <td><a href=""><img src=""></a></td>
| + | <td><a href=""><img src=""></a></td> |
− | <td><a href=""><img src=""></a></td>
| + | <td><a href=""><img src=""></a></td> |
− | <td><a href=""><img src=""></a></td>
| + | </tr> |
− | <td><a href=""><img src=""></a></td>
| + | </table> |
− | </tr>
| + | <p class="footnote">b. Antigen concentration 62.5 mg/L, antibody concentration 500 ng/mL result |
− | </table>
| + | image</p> |
− | <p class="footnote">c. Antigen concentration 62.5 mg/L, antibody concentration 1000 ng/mL result
| + | <table class="img"> |
− | image</p>
| + | <tr> |
− | <table class="img">
| + | <td><a href=""><img src=""></a></td> |
− | <tr>
| + | <td><a href=""><img src=""></a></td> |
− | <td><a href=""><img src=""></a></td>
| + | <td><a href=""><img src=""></a></td> |
− | <td><a href=""><img src=""></a></td>
| + | <td><a href=""><img src=""></a></td> |
− | <td><a href=""><img src=""></a></td>
| + | </tr> |
− | <td><a href=""><img src=""></a></td>
| + | </table> |
− | </tr>
| + | <p class="footnote">c. Antigen concentration 62.5 mg/L, antibody concentration 1000 ng/mL result |
− | </table>
| + | image</p> |
− | <p class="footnote">d. Antigen concentration 31.25 mg/L, antibody concentration 500 ng/mL result
| + | <table class="img"> |
− | image</p>
| + | <tr> |
− | <table class="img">
| + | <td><a href=""><img src=""></a></td> |
− | <tr>
| + | <td><a href=""><img src=""></a></td> |
− | <td><a href=""><img src=""></a></td>
| + | <td><a href=""><img src=""></a></td> |
− | <td><a href=""><img src=""></a></td>
| + | <td><a href=""><img src=""></a></td> |
− | <td><a href=""><img src=""></a></td>
| + | </tr> |
− | <td><a href=""><img src=""></a></td>
| + | </table> |
− | </tr>
| + | <p class="footnote">d. Antigen concentration 31.25 mg/L, antibody concentration 500 ng/mL result |
− | </table>
| + | image</p> |
− | <p class="footnote">e. Antigen concentration 31.25 mg/L, antibody concentration 1000 ng/mL result
| + | <table class="img"> |
− | image</p>
| + | <tr> |
− | <table class="img">
| + | <td><a href=""><img src=""></a></td> |
− | <tr>
| + | <td><a href=""><img src=""></a></td> |
− | <td><a href=""><img src=""></a></td>
| + | <td><a href=""><img src=""></a></td> |
− | <td><a href=""><img src=""></a></td>
| + | <td><a href=""><img src=""></a></td> |
− | </tr>
| + | </tr> |
− | </table>
| + | </table> |
− | <p class="footnote">f. Antigen concentration 500ng/mL, antibody concentration 1000 ng/mL result
| + | <p class="footnote">e. Antigen concentration 31.25 mg/L, antibody concentration 1000 ng/mL |
− | image</p>
| + | result |
− | <p class="footnote"><b>Figure 5</b> Verification of extreme antigen concentration</p>
| + | image</p> |
− | <p>The result can be that the combination of the two can disturb the alignment of the liquid
| + | <table class="img"> |
− | crystal. At the same time, the antigen is fixed.</p>
| + | <tr> |
| + | <td><a href=""><img src=""></a></td> |
| + | <td><a href=""><img src=""></a></td> |
| + | </tr> |
| + | </table> |
| + | <p class="footnote">f. Antigen concentration 500ng/mL, antibody concentration 1000 ng/mL result |
| + | image</p> |
| + | <p class="footnote"><b>Figure 5</b> Verification of extreme antigen concentration</p> |
| + | <p>The result can be that the combination of the two can disturb the alignment of the liquid |
| + | crystal. At the same time, the antigen is fixed.</p> |
| + | </div> |
| </div> | | </div> |
− | </div>
| |
| | | |
− | <div>
| + | <div> |
− | <h2 class="title time">Explore the Appropriate Concentration of Nanobodies Again</h2>
| + | <h2 class="title time">Explore the Appropriate Concentration of Nanobodies Again</h2> |
− | <div class="mainText">
| + | <div class="mainText"> |
− | <p>Time:</p>
| + | <p>Time:</p> |
− | <ul>
| + | <ul> |
− | <li>15 Sept: Antigen concentration 500ng/ml, antibody concentration 1000 ng/ml; Antigen
| + | <li>15 Sept: Antigen concentration 500ng/ml, antibody concentration 1000 ng/ml; Antigen |
− | concentration 500ng/ml, antibody concentration 1500 ng/ml.
| + | concentration 500ng/ml, antibody concentration 1500 ng/ml. |
− | </li>
| + | </li> |
− | </ul>
| + | </ul> |
− | <p>Following the last experiment, we thought that 500 ng/mL antigen fixation is currently
| + | <p>Following the last experiment, we thought that 500 ng/mL antigen fixation is currently |
− | reasonable. So we did the effect of antibody concentration of 1000 ng/mL and 1500 ng/mL at an
| + | reasonable. So we did the effect of antibody concentration of 1000 ng/mL and 1500 ng/mL at |
− | antigen concentration of 500 ng/mL (Figure (6) a, b), where we will self-assemble the upper and
| + | an |
− | lower slides. And considering the damage of the slide and the slide pool, in the self-assembly
| + | antigen concentration of 500 ng/mL (Figure (6) a, b), where we will self-assemble the upper |
− | of the slide, the slide was dried at 110℃ for 1 h and changed to dry at 80℃ for 1 h. At the same
| + | and |
− | time, the antigen fixation process still adopts the method of soaking. Three sets of parallel
| + | lower slides. And considering the damage of the slide and the slide pool, in the |
− | experiments were performed separately.</p>
| + | self-assembly |
− | <p>Then we also made a set of antigen concentration of 500 ng / ml, antibody concentration of 1500
| + | of the slide, the slide was dried at 110℃ for 1 h and changed to dry at 80℃ for 1 h. At the |
− | ng / ml (Figure (6) c). However, the method of soaking the immobilized antigen was not adopted,
| + | same |
− | but the previous dropping method was employed.</p>
| + | time, the antigen fixation process still adopts the method of soaking. Three sets of |
− | <table class="img">
| + | parallel |
− | <tr>
| + | experiments were performed separately.</p> |
− | <td><a href=""><img src=""></a></td>
| + | <p>Then we also made a set of antigen concentration of 500 ng / ml, antibody concentration of |
− | <td><a href=""><img src=""></a></td>
| + | 1500 |
− | <td><a href=""><img src=""></a></td>
| + | ng / ml (Figure (6) c). However, the method of soaking the immobilized antigen was not |
− | </tr>
| + | adopted, |
− | </table>
| + | but the previous dropping method was employed.</p> |
− | <p class="footnote">a. Antigen concentration 500ng/mL, antibody concentration 1000 ng/mL result
| + | <table class="img"> |
− | imag.</p>
| + | <tr> |
− | <table class="img">
| + | <td><a href=""><img src=""></a></td> |
− | <tr>
| + | <td><a href=""><img src=""></a></td> |
− | <td><a href=""><img src=""></a></td>
| + | <td><a href=""><img src=""></a></td> |
− | <td><a href=""><img src=""></a></td>
| + | </tr> |
− | <td><a href=""><img src=""></a></td>
| + | </table> |
− | </tr>
| + | <p class="footnote">a. Antigen concentration 500ng/mL, antibody concentration 1000 ng/mL result |
− | </table>
| + | imag.</p> |
− | <p class="footnote">b. Antigen concentration 500ng/mL, antibody concentration 1500 ng/mL result
| + | <table class="img"> |
− | image</p>
| + | <tr> |
− | <table class="img">
| + | <td><a href=""><img src=""></a></td> |
− | <tr>
| + | <td><a href=""><img src=""></a></td> |
− | <td><a href=""><img src=""></a></td>
| + | <td><a href=""><img src=""></a></td> |
− | </tr>
| + | </tr> |
− | </table>
| + | </table> |
− | <p class="footnote">c. Antigen concentration 500ng/mL, antibody concentration 1500 ng/mL result
| + | <p class="footnote">b. Antigen concentration 500ng/mL, antibody concentration 1500 ng/mL result |
− | image(Antigen drop fixation)</p>
| + | image</p> |
− | <p class="footnote"><b>Figure 6</b> Verifying the nanobody concentration experiment again</p>
| + | <table class="img"> |
− | <p>The experimental results showed that the antibody concentration was responsive at 1000 ng/mL and
| + | <tr> |
− | 1500 ng/mL, and the results were obvious. Among them, the method of dropping antigen is more
| + | <td><a href=""><img src=""></a></td> |
− | stable.</p>
| + | </tr> |
| + | </table> |
| + | <p class="footnote">c. Antigen concentration 500ng/mL, antibody concentration 1500 ng/mL result |
| + | image(Antigen drop fixation)</p> |
| + | <p class="footnote"><b>Figure 6</b> Verifying the nanobody concentration experiment again</p> |
| + | <p>The experimental results showed that the antibody concentration was responsive at 1000 ng/mL |
| + | and |
| + | 1500 ng/mL, and the results were obvious. Among them, the method of dropping antigen is more |
| + | stable.</p> |
| + | </div> |
| </div> | | </div> |
− | </div>
| |
| | | |
− | <div>
| + | <div> |
− | <h2 class="title time">The Influence of GA and APTES</h2>
| + | <h2 class="title time">The Influence of GA and APTES</h2> |
− | <div class="mainText">
| + | <div class="mainText"> |
− | <p>Time:</p>
| + | <p>Time:</p> |
− | <ul>
| + | <ul> |
− | <li>19 Sept: The influence with or without APTES and GA.</li>
| + | <li>19 Sept: The influence with or without APTES and GA.</li> |
− | </ul>
| + | </ul> |
− | <p>Since the previous results were more pronounced, we then explored the impact of GA and APTES on
| + | <p>Since the previous results were more pronounced, we then explored the impact of GA and APTES |
− | the results. We skipped the steps of immobilizing the antigen and dropping the antibody,
| + | on |
− | directly performing the GA addition step after self-assembly of the slide, and exploring the
| + | the results. We skipped the steps of immobilizing the antigen and dropping the antibody, |
− | effect of GA (shown in Figure (7)a). The impact of APTES is to observe the observations made
| + | directly performing the GA addition step after self-assembly of the slide, and exploring the |
− | after self-assembly (Figure (7)b).</p>
| + | effect of GA (shown in Figure (7)a). The impact of APTES is to observe the observations made |
− | <table class="img">
| + | after self-assembly (Figure (7)b).</p> |
− | <tr>
| + | <table class="img"> |
− | <td><a href=""><img src=""></a></td>
| + | <tr> |
− | <td><a href=""><img src=""></a></td>
| + | <td><a href=""><img src=""></a></td> |
− | </tr>
| + | <td><a href=""><img src=""></a></td> |
− | </table>
| + | </tr> |
− | <p class="footnote">a. APTES inquiry results</p>
| + | </table> |
− | <table class="img">
| + | <p class="footnote">a. APTES inquiry results</p> |
− | <tr>
| + | <table class="img"> |
− | <td><a href=""><img src=""></a></td>
| + | <tr> |
− | <td><a href=""><img src=""></a></td>
| + | <td><a href=""><img src=""></a></td> |
− | </tr>
| + | <td><a href=""><img src=""></a></td> |
− | </table>
| + | </tr> |
− | <p class="footnote">b. GA inquiry results</p>
| + | </table> |
− | <p class="footnote"><b>Figure 7</b> The impact of APTES and GA</p>
| + | <p class="footnote">b. GA inquiry results</p> |
− | <p>It can be seen from the results that APTES and GA are negligible for liquid crystal
| + | <p class="footnote"><b>Figure 7</b> The impact of APTES and GA</p> |
− | disturbance.</p>
| + | <p>It can be seen from the results that APTES and GA are negligible for liquid crystal |
| + | disturbance.</p> |
| + | </div> |
| </div> | | </div> |
− | </div>
| |
| | | |
− | <div>
| + | <div> |
− | <h2 class="title">Hydrophilic Experiment of Slide</h2>
| + | <h2 class="title">Hydrophilic Experiment of Slide</h2> |
− | <div class="mainText">
| + | <div class="mainText"> |
− | <p>In order to investigate how hydrophilic the slides were before and after antigen addition, we
| + | <p>In order to investigate how hydrophilic the slides were before and after antigen addition, we |
− | conducted a measurement of the contact angle experiment. Among them, we will self-assemble the
| + | conducted a measurement of the contact angle experiment. Among them, we will self-assemble |
− | upper and lower slides, and the upper and lower slides will be dried at 110℃ for 1 h, changed to
| + | the |
− | be dried at 80℃ for 1 h. The method of immobilizing the antigen is to adopt a soaking
| + | upper and lower slides, and the upper and lower slides will be dried at 110℃ for 1 h, |
− | method.</p>
| + | changed to |
− | <p>No antigen was added, and the contact angle of 50 ng/mL antigen with 500 ng/mL antigen was shown
| + | be dried at 80℃ for 1 h. The method of immobilizing the antigen is to adopt a soaking |
− | (Fig. 8 (8) a, b, c).</p>
| + | method.</p> |
− | <table class="img">
| + | <p>No antigen was added, and the contact angle of 50 ng/mL antigen with 500 ng/mL antigen was |
− | <tr>
| + | shown |
− | <td><a href=""><img src=""></a></td>
| + | (Fig. 8 (8) a, b, c).</p> |
− | <td><a href=""><img src=""></a></td>
| + | <table class="img"> |
− | <td><a href=""><img src=""></a></td>
| + | <tr> |
− | </tr>
| + | <td><a href=""><img src=""></a></td> |
− | <tr>
| + | <td><a href=""><img src=""></a></td> |
− | <td><p class="footnote">a. Unfixed antigen</p></td>
| + | <td><a href=""><img src=""></a></td> |
− | <td><p class="footnote">b. Antigen concentration 50ng/mL</p></td>
| + | </tr> |
− | <td><p class="footnote">c. Antigen concentration 500ng/mL</p></td>
| + | <tr> |
− | </tr>
| + | <td><p class="footnote">a. Unfixed antigen</p></td> |
− | </table>
| + | <td><p class="footnote">b. Antigen concentration 50ng/mL</p></td> |
| + | <td><p class="footnote">c. Antigen concentration 500ng/mL</p></td> |
| + | </tr> |
| + | </table> |
| | | |
− | <p class="footnote"><b>Figure 8</b> Results of the hydrophilicity test of the lower slide</p>
| + | <p class="footnote"><b>Figure 8</b> Results of the hydrophilicity test of the lower slide</p> |
− | <p>It can be concluded that as the concentration of the immobilized antigen increases, the slide
| + | <p>It can be concluded that as the concentration of the immobilized antigen increases, the slide |
− | changes from hydrophobic to hydrophilic.</p>
| + | changes from hydrophobic to hydrophilic.</p> |
| + | </div> |
| </div> | | </div> |
− | </div>
| |
| | | |
− | <div>
| + | <div> |
− | <h2 class="title time">Study on Antigen Concentration and Fixed Time</h2>
| + | <h2 class="title time">Study on Antigen Concentration and Fixed Time</h2> |
− | <div class="mainText">
| + | <div class="mainText"> |
− | <p>Time:</p>
| + | <p>Time:</p> |
− | <ul>
| + | <ul> |
− | <li>26 Sept: Antigen concentrations of 500 ng/ml and 750 ng/ml were fixed for 12 h.</li>
| + | <li>26 Sept: Antigen concentrations of 500 ng/ml and 750 ng/ml were fixed for 12 h.</li> |
− | <li>27 Sept: Antigen concentrations of 500 ng/ml and 750 ng/ml were fixed for 8.5 h.</li>
| + | <li>27 Sept: Antigen concentrations of 500 ng/ml and 750 ng/ml were fixed for 8.5 h.</li> |
− | </ul>
| + | </ul> |
− | <p>After the discussion of the previous results, we discussed with the teacher, and then explored
| + | <p>After the discussion of the previous results, we discussed with the teacher, and then |
− | whether there is a problem with the antigen fixed time. We performed experimental results at
| + | explored |
− | antigen
| + | whether there is a problem with the antigen fixed time. We performed experimental results at |
− | concentrations of 50 ng/mL and 500 ng/mL and fixed for 8.5 h and 12 h (Figures (9) a, b, c, d).
| + | antigen |
− | Among them, we will self-assemble the upper and lower slides, and the upper and lower slides
| + | concentrations of 50 ng/mL and 500 ng/mL and fixed for 8.5 h and 12 h (Figures (9) a, b, c, |
− | will be
| + | d). |
− | dried at 110℃ for 1 h, changed to be dried at 80℃ for 1h. The antigen fixation method is fixed
| + | Among them, we will self-assemble the upper and lower slides, and the upper and lower slides |
− | by
| + | will be |
− | dropping.</p>
| + | dried at 110℃ for 1 h, changed to be dried at 80℃ for 1h. The antigen fixation method is |
− | <table class="img">
| + | fixed |
− | <tr>
| + | by |
− | <td><a href=""><img src=""></a></td>
| + | dropping.</p> |
− | <td><a href=""><img src=""></a></td>
| + | <table class="img"> |
− | </tr>
| + | <tr> |
− | </table>
| + | <td><a href=""><img src=""></a></td> |
− | <p class="footnote">a. Antigen 50ng/mL fixed 8.5h result image</p>
| + | <td><a href=""><img src=""></a></td> |
− | <table class="img">
| + | </tr> |
− | <tr>
| + | </table> |
− | <td><a href=""><img src=""></a></td>
| + | <p class="footnote">a. Antigen 50ng/mL fixed 8.5h result image</p> |
− | <td><a href=""><img src=""></a></td>
| + | <table class="img"> |
− | </tr>
| + | <tr> |
− | </table>
| + | <td><a href=""><img src=""></a></td> |
− | <p class="footnote">b. Antigen 500ng/mL fixed 8.5h result image</p>
| + | <td><a href=""><img src=""></a></td> |
− | <table class="img">
| + | </tr> |
− | <tr>
| + | </table> |
− | <td><a href=""><img src=""></a></td>
| + | <p class="footnote">b. Antigen 500ng/mL fixed 8.5h result image</p> |
− | <td><a href=""><img src=""></a></td>
| + | <table class="img"> |
− | </tr>
| + | <tr> |
− | </table>
| + | <td><a href=""><img src=""></a></td> |
− | <p class="footnote">c. Antigen 50ng/mL fixed 12h result image</p>
| + | <td><a href=""><img src=""></a></td> |
− | <table class="img">
| + | </tr> |
− | <tr>
| + | </table> |
− | <td><a href=""><img src=""></a></td>
| + | <p class="footnote">c. Antigen 50ng/mL fixed 12h result image</p> |
− | <td><a href=""><img src=""></a></td>
| + | <table class="img"> |
− | </tr>
| + | <tr> |
− | </table>
| + | <td><a href=""><img src=""></a></td> |
− | <p class="footnote">d. Antigen 500ng/mL fixed 12h result image</p>
| + | <td><a href=""><img src=""></a></td> |
− | <p class="footnote"><b>Figure 9</b> Results of antigen fixation time</p>
| + | </tr> |
− | <p>The experimental results show that the fixed time has a great relationship with the degree of
| + | </table> |
− | liquid
| + | <p class="footnote">d. Antigen 500ng/mL fixed 12h result image</p> |
− | crystal disturbance. The longer the time, the more serious the disturbance.</p>
| + | <p class="footnote"><b>Figure 9</b> Results of antigen fixation time</p> |
| + | <p>The experimental results show that the fixed time has a great relationship with the degree of |
| + | liquid |
| + | crystal disturbance. The longer the time, the more serious the disturbance.</p> |
| + | </div> |
| </div> | | </div> |
| </div> | | </div> |
| | | |
| + | <h2 class="title time">Experiment of Molecular Biology</h2> |
| + | <div class="mainText"> |
| + | <p>Sept. 23</p> |
| + | <p>Transformation our two plasmids of BL21 cells. And Pipette 100 μL of the transformation onto a plate |
| + | with antibiotic as appropiate (kanamycin 50 µg/ mL and 100 µg/mL for ampicillin).</p> |
| + | <p>Sept. 24</p> |
| + | <p>Picking up a single colony inoculation into 100 mL LB liquid medium (with antibiotic). 37℃, 220 rpm |
| + | for 16 hours.</p> |
| + | <p>Sept. 25</p> |
| + | <p>(1) Measured OD600, the value was less than 0.5, pipetted 1 mL cultures to 100 mL new LB liquid |
| + | medium (with antibiotic). 37℃, 220 rpm for 4 hours. |
| + | </p> |
| + | <p>(2) Measured OD600, but the value was less than 0.5 too.</p> |
| + | <p>Sept. 26 ~ Sept. 28</p> |
| + | <p>We continued to train the cells, but the OD600 has been low, so we discussed the reasons for the |
| + | failure and made a series of improvements to the steps.</p> |
| + | <p>Sept. 29</p> |
| + | <p>We repeat the steps of Sept. 24.</p> |
| + | <p>Sept. 30</p> |
| + | <p>Picking up a single colony inoculation into 5 mL LB liquid medium (with antibiotic). 37℃, 220 rpm for |
| + | 16 hours.</p> |
| + | <p>Oct. 1</p> |
| + | <p>Picking up a single colony inoculation into 5 mL LB liquid medium (with antibiotic). 37℃, 220 rpm for |
| + | 16 hours.</p> |
| + | <p>Oct. 2</p> |
| + | <p>When we reconfigured new medium, we found that the two pH meters we used were higher than the actual |
| + | value of 2, so we switched to the pH test paper. </p> |
| + | <p>Than we repeat the steps of Sept. 24 again.</p> |
| + | <p>Oct. 3</p> |
| + | |
| + | <p>(1) Today, We did the colony PCR and agarose gel. The methods are at the Protocols. But our retules |
| + | was not good. We thought that was because we were’t boiled the cells. |
| + | </p> |
| + | <p>(2) We picked up a single colony inoculation from the plate into 5 mL LB liquid medium (with |
| + | antibiotic). 37℃, 220 rpm for 16 hours. |
| + | </p> |
| + | |
| + | <p>Oct. 4</p> |
| + | |
| + | <p>(1) Pipetted 150 mL cultures to 15 mL LB liquid medium (with antibiotic). 37℃, 220 rpm for 4-5 |
| + | hours. Measured OD600. When OD600=0.5, we did the Bacteria Preservation. |
| + | </p> |
| + | <p>(2) At 18:00, add CuSO4 and Ara to 15mL medium (50μM/L for CuSO4 and 0.2% for Ara, 18℃, 220 rpm for |
| + | 1 hour,and than add IPTG to medium for 0.2mM, 18℃, 220 rpm 16 hours. |
| + | </p> |
| + | |
| + | <p>Oct. 5</p> |
| + | |
| + | <p>(1) Centrifuged the cultures and resuspended the cells in PBS. Ultrasonic broken the cells, |
| + | Centrifuged again and take the supernatant in a refrigerator at 4 °C |
| + | </p> |
| + | <p>(2) Repeated the steps of Sept. 24.</p> |
| + | |
| + | <p>Oct. 6</p> |
| + | <p>We found that the E.coli BL21 was failed so we want to extracted plasmids from E.coli DH-5α.</p> |
| + | <p>(3) Pipetted 50 μL cultures to 5 mL new LB liquid medium (with antibiotic). 37℃, 220 rpm for 16 |
| + | hours.</p> |
| + | <p>Oct. 7</p> |
| + | <p>Today, we did the plasmids extraction and agarose gel. But the result was not well. So we wanted to |
| + | do this step again.</p> |
| + | <table class="img"> |
| + | <tr> |
| + | <td><img src="https://static.igem.org/mediawiki/2018/1/1d/T--DLUT_China_B--Notebook81.jpg" alt=""> |
| + | </td> |
| + | </tr> |
| + | <tr> |
| + | <td> |
| + | <p class="footnote"><b>Figure 10</b> 1~7 are our sample, 8 is Maker.</p> |
| + | </td> |
| + | </tr> |
| + | </table> |
| + | <p>Oct. 8</p> |
| + | <p>Activation of DH-5α single colony on a 10.2-day conversion plate.</p> |
| + | <p>Oct. 9</p> |
| + | <p>Extracted plasmids again,and we got a good result.</p> |
| + | <table class="img"> |
| + | <tr> |
| + | <td><img src="https://static.igem.org/mediawiki/2018/4/42/T--DLUT_China_B--Notebook82.jpg" alt=""> |
| + | </td> |
| + | </tr> |
| + | <tr> |
| + | <td> |
| + | <p class="footnote"><b>Figure 11</b> 1-7 are our sample. 9-10 are Makers.</p> |
| + | </td> |
| + | </tr> |
| + | </table> |
| + | <table class="data"> |
| + | <tr> |
| + | <td>Sample</td> |
| + | <td>ng/μL</td> |
| + | <td>A260/A280</td> |
| + | <td>A260/A230</td> |
| + | <td>A260</td> |
| + | <td>A280 |
| + | </td> |
| + | </tr> |
| + | <tr> |
| + | <td>1</td> |
| + | <td>49.4</td> |
| + | <td>1.67</td> |
| + | <td>2.43</td> |
| + | <td>0.99</td> |
| + | <td>0.59 |
| + | </td> |
| + | </tr> |
| + | <tr> |
| + | <td>2</td> |
| + | <td>75.5</td> |
| + | <td>1.82</td> |
| + | <td>2.55</td> |
| + | <td>1.51</td> |
| + | <td>0.83 |
| + | </td> |
| + | </tr> |
| + | <tr> |
| + | <td>3</td> |
| + | <td>66.6</td> |
| + | <td>1.83</td> |
| + | <td>4.63</td> |
| + | <td>1.33</td> |
| + | <td>0.73 |
| + | </td> |
| + | </tr> |
| + | <tr> |
| + | <td>4</td> |
| + | <td>65.9</td> |
| + | <td>1.82</td> |
| + | <td>4.57</td> |
| + | <td>1.32</td> |
| + | <td>0.72 |
| + | </td> |
| + | </tr> |
| + | <tr> |
| + | <td>5</td> |
| + | <td>70.1</td> |
| + | <td>1.76</td> |
| + | <td>2.55</td> |
| + | <td>1.40</td> |
| + | <td>0.80 |
| + | </td> |
| + | </tr> |
| + | <tr> |
| + | <td>6</td> |
| + | <td>102.8</td> |
| + | <td>1.86</td> |
| + | <td>2.59</td> |
| + | <td>2.06</td> |
| + | <td>1.11 |
| + | </td> |
| + | </tr> |
| + | <tr> |
| + | <td>7</td> |
| + | <td>68.9</td> |
| + | <td>1.75</td> |
| + | <td>2.37</td> |
| + | <td>1.38</td> |
| + | <td>0.79</td> |
| + | </tr> |
| + | </table> |
| + | <p class="footnote"><b>Figure 12</b> Concentration of each sample</p> |
| + | <p>Oct. 10</p> |
| + | <p>Transformation our two plasmids of BL21 cells. And Pipette 100 μL of the transformation onto a plate |
| + | with antibiotic as appropiate (kanamycin 50 µg/ mL and 100 µg/mL for ampicillin).</p> |
| + | <p>Oct. 11</p> |
| + | <p>Picking up a single colony inoculation into 100 mL LB liquid medium (with antibiotic). 37℃, 220 rpm |
| + | for 16 hours. Than we did the Bacteria Preservation and expanded cultures.</p> |
| + | <p>Oct. 12</p> |
| + | <p>pipetted 500 μL cultures to 50 mL new LB liquid medium (with antibiotic). 37℃, 220 rpm for |
| + | 4-5hours.</p> |
| + | |
| + | <p>(1) Measured OD600.</p> |
| + | <p>(2) We repeated the steps of Oct. 4 (2).</p> |
| + | |
| + | <p>Oct. 13</p> |
| + | |
| + | <p>(1) Repeated the steps of 10.5(1). Take the supernatant and make it pH=4, Centrifuged again. Take |
| + | 100μL supernatant to a tube and add 5μL fluorescent dye to it. Wrpa the tube with tin foil 37℃ |
| + | for 6 hours. Resuspending the sample with PBS for the above precipitation. |
| + | </p> |
| + | <p>(2) Add 50 mM C18 acylhdrazine to 5 mL DMSO. Add 100μL the mixture to 1 mL supernatant. for two |
| + | tubes. One at 37℃ for 3 hours. Another at 20℃ for 3 hours. |
| + | </p> |
| + | |
| + | <p>Oct. 14</p> |
| + | <p>We did the SDS-PAGE. The order as follow:</p> |
| + | <ol> |
| + | <li>Fluorescent dye modification</li> |
| + | <li>2.C18 acylhdrazine modification for 37 ℃</li> |
| + | <li>C18 acylhdrazine modification for 20 ℃</li> |
| + | <li>Acidified supernatant</li> |
| + | <li>Maker</li> |
| + | <li>Maker</li> |
| + | <li>Broken supernatant</li> |
| + | <li>Post-crushing precipitation</li> |
| + | <li>Induced bacterial solution</li> |
| + | <li>Inductive bacteria solution</li> |
| + | </ol> |
| + | <p>The result was as follow.</p> |
| + | <table class="img"> |
| + | <tr> |
| + | <td><img src="https://static.igem.org/mediawiki/2018/7/76/T--DLUT_China_B--Notebook83.jpg" alt=""> |
| + | </td> |
| + | </tr> |
| + | <tr> |
| + | <td> |
| + | <p class="footnote"><b>Figure 12</b> The result of SDS-PAGE</p> |
| + | </td> |
| + | </tr> |
| + | </table> |
| + | <p>Oct. 15</p> |
| + | <p>Determination of protein concentration of prepared nanometer antibody.</p> |
| + | </div> |
| </div> | | </div> |
| </div> | | </div> |
Line 611: |
Line 936: |
| <div></div> | | <div></div> |
| <div><img src="https://static.igem.org/mediawiki/2018/6/6b/T--DLUT_China_B--weibo.png" width="100"></div> | | <div><img src="https://static.igem.org/mediawiki/2018/6/6b/T--DLUT_China_B--weibo.png" width="100"></div> |
− |
| |
| </div> | | </div> |
| </div> | | </div> |