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h('p', null, 'In our project, we only chose to focus on parts 2 and 3 for reasons stated further below.'), | h('p', null, 'In our project, we only chose to focus on parts 2 and 3 for reasons stated further below.'), | ||
− | h('p', null, 'A point-of-care diagnostic system would also need to be easily accessible in resource limited settings. Much like with PCR and HIV culture tests, many resource-constrained settings also lack the ability to house specific reagents and proper transportation of enzymes to remote areas is difficult [', r(5), ']. For these reasons, we also aimed to look into the use of lyophilized bacterial reagents, termed “cellular reagents.” Bacteria can be modified to express certain enzymes, grown, and then lyophilized with their produced enzyme. These “cellular reagents” can then be transported dry, stored at room temperature for extended periods of time, and resuspended later at the time of use. Introducing cellular reagents into our HIV-1 diagnostic kit would make it much more accessible to resource-limited settings.') | + | h('p', null, 'A point-of-care diagnostic system would also need to be easily accessible in resource limited settings. Much like with PCR and HIV culture tests, many resource-constrained settings also lack the ability to house specific reagents and proper transportation of enzymes to remote areas is difficult [', r(5), ']. For these reasons, we also aimed to look into the use of lyophilized bacterial reagents, termed “cellular reagents.” Bacteria can be modified to express certain enzymes, grown, and then lyophilized with their produced enzyme. These “cellular reagents” can then be transported dry, stored at room temperature for extended periods of time, and resuspended later at the time of use. Introducing cellular reagents into our HIV-1 diagnostic kit would make it much more accessible to resource-limited settings.'), |
+ | h('ol', null, | ||
+ | h('li', null, 'Isolation of Viral DNA from Infected Cells', h('p', null, 'After consultation with field expert Dr. Leautaud at Rice University, our team was told that in the field samples of nucleotides would most likely be obtained from infected white blood cells. Because loop-mediated isothermal amplification is a fairly robust procedure, isolation of nucleotides can be done fairly simply with detergent or high temperature and not risk messing up the isothermal amplification reaction. Dr. Leautaud further advised us to focus on our isothermal amplification and detection assays, stating that, if it was necessary, we could collaborate with other teams or labs on the matter of nucleotide isolation.'), h('p', null, '(To read more on how human practices impacted the development of our kit, go to our Kit Considerations page ', h('a', {href: 'https://2018.igem.org/Team:Austin_LASA/Kit'}, 'here'), '.)')), | ||
+ | h('li', null, 'Isothermal Amplification of Viral DNA for Greater Sensitivity', h('p', null, 'The sensitivity of our Cas12a detection method depends on the amount of viral DNA present for detection to occur. For this reason, an amplification step of the target sequence prior to detection is necessary. However, as PCR is limited in resource-deficient environments, we looked into different methods of isothermal amplification of DNA that would be more accessible.'), h('p', null, 'There are several methods of isothermal amplification. We chose to work with loop-mediated isothermal amplification (LAMP) as our PI and lab mentors have prior experience with LAMP.'), h('p', null, 'LAMP is a reaction that relies on four specific primers. These primers are more difficult to design than the primers for PCR so we used PrimerExplorer to design primers that would amplify various regions of Rev. At the location of point of care, someone would pipette the isolated viral DNA into a tube with rehydrated LAMP cellular regents and then add a mastermix (that was previously stored at a lower temperature). This reaction would subsequently be placed in a water bath at 60–65 °C for 90 minutes, which would allow the viral DNA to be amplified.')), | ||
+ | h('li', null, 'Detection of DNA by a Cas12a Assay', h('p', null, 'The final step in our kit would be our Cas12a detection assay. As stated earlier, our detection assay would take advantage of Cas12a’s characteristic to indiscriminately cleave any single-stranded nucleotides in its vicinity following cleavage of a duplexed target strand. We would use our amplified DNA from our LAMP reactions as our target strands and design corresponding crRNA sequences to specifically detect our viral DNA. As mentioned before, we would use a fluorophore-quencher pair to detect Cas12a activity. In order to translate our detection assay to cellular reagents, we would express Cas12a and crRNA in bacteria, then subsequently lyophilize said bacteria to create cellular reagents. In the field, the cellular reagents would be rehydrated and used for a reaction.')) | ||
+ | ) | ||
+ | ), | ||
+ | h(g.Section, {title: 'OUR iGEM PROJECT GOAL'}, | ||
+ | h('p', null, 'Our team focused on demonstrating loop-mediated isothermal amplification and subsequent detection of HIV-1 DNA via Cas12a with purified enzymes and cellular reagents.') | ||
), | ), | ||
h(g.Section, {title: 'References'}, | h(g.Section, {title: 'References'}, | ||
− | h('p', null, '[', h('a', {id: 'ref_1'}, '1'), '] | + | h('p', null, '[', h('a', {id: 'ref_1'}, '1'), '] Who.int. (2018). WHO | Antiretroviral therapy of HIV infection in infants and children. [online] Available at: ', h('a', {href: 'http://www.who.int/hiv/pub/paediatric/infants/en/'}, 'http://www.who.int/hiv/pub/paediatric/infants/en/'), ' [Accessed 17 Oct. 2018].'), |
− | h('p', null, '[', h('a', {id: 'ref_2'}, '2'), '] Krist, | + | h('p', null, '[', h('a', {id: 'ref_2'}, '2'), '] Krist AH, Crawford-Faucher A. Management of Newborns Exposed to Maternal HIV Infection. American Family Physician. ', h('a', {href: 'https://www.aafp.org/afp/2002/0515/p2049.html'}, 'https://www.aafp.org/afp/2002/0515/p2049.html'), ' Published May 15, 2002. Accessed October 17, 2018.'), |
− | h('p', null, '[', h('a', {id: 'ref_3'}, '3'), '] | + | h('p', null, '[', h('a', {id: 'ref_3'}, '3'), '] Dr G Vercauteren, Dr Siobhan Crowley. Early detection of HIV infection in infants and children.'), |
− | h('p', null, '[', h('a', {id: 'ref_4'}, '4'), '] Diagnosis of HIV Infection in Infants and Children Pediatric ARV. | + | h('p', null, '[', h('a', {id: 'ref_4'}, '4'), '] Diagnosis of HIV Infection in Infants and Children Pediatric ARV. National Institutes of Health. ', h('a', {href: 'https://aidsinfo.nih.gov/guidelines/html/2/pediatric-arv/55/diagnosis-of-hiv-infection-in-infants-and-children'}, 'https://aidsinfo.nih.gov/guidelines/html/2/pediatric-arv/55/diagnosis-of-hiv-infection-in-infants-and-children'), '. Published November 15, 2017. Accessed October 17, 2018.'), |
− | h('p', null, '[', h('a', {id: 'ref_5'}, '5'), '] Shafiee | + | h('p', null, '[', h('a', {id: 'ref_5'}, '5'), '] Shafiee H, Wang S, Inci F, et al. Emerging Technologies for Point-of-Care Management of HIV Infection. Annual Review of Medicine. 2015;66(1):387-405. doi:10.1146/annurev-med-092112-143017.'), |
− | h('p', null, '[', h('a', {id: 'ref_6'}, '6'), '] Gootenberg | + | h('p', null, '[', h('a', {id: 'ref_6'}, '6'), '] Gootenberg JS, Abudayyeh OO, Kellner MJ, Joung J, Collins JJ, Zhang F. Multiplexed and portable nucleic acid detection platform with Cas13, Cas12a, and Csm6. Science. 2018;360(6387):439-444. doi:10.1126/science.aaq0179.'), |
− | h('p', null, '[', h('a', {id: 'ref_7'}, '7'), '] | + | h('p', null, '[', h('a', {id: 'ref_7'}, '7'), '] Montoya G. Faculty of 1000 evaluation for CRISPR-Cas12a target binding unleashes indiscriminate single-stranded DNase activity. F1000 - Post-publication peer review of the biomedical literature. 2018. doi:10.3410/f.732670635.793547776.'), |
+ | h('p', null, '[', h('a', {id: 'ref_8'}, '8'), '] Notomi T. Loop-mediated isothermal amplification of DNA. Nucleic Acids Research. 2000;28(12). doi:10.1093/nar/28.12.e63.'), | ||
) | ) | ||
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Latest revision as of 02:26, 18 October 2018