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<div style="
margin-top: 50px;" id="harvard" class="hashlink"><div class="row"><div class="col-md-12"><h3>Harvard</h3><h4>Team Project</h4><p>Quisque scelerisque tempor arcu quis suscipit. Maecenas risus risus, dapibus a est sed, ornare pretium ligula. Nullam nec eros lacus. Pellentesque habitant morbi tristique senectus et netus et malesuada fames ac turpis egestas. Nulla id erat imperdiet, placerat felis imperdiet, molestie purus. Nunc eu elit ac enim pulvinar viverra. Ut eu ultrices mauris. Nam ac sem quis dui posuere commodo ut quis velit. Nunc at diam sed diam porttitor varius.&nbsp;</p><h4>Collaboration</h4><p> Aliquam ut dolor ut tellus tempus vestibulum nec nec lorem. Ut et sem ut nisi tincidunt lacinia. Sed aliquam aliquam cursus. Aliquam varius metus sit amet nunc consectetur, a luctus ex consequat. Vivamus lacus nibh, tristique vel dolor nec, sodales rutrum leo. Vestibulum rutrum viverra imperdiet. Morbi tincidunt eget libero vitae bibendum.&nbsp;Aenean ut lacus at lorem pretium congue quis ac tortor. Donec iaculis, felis a porta aliquam, justo augue luctus ipsum, vehicula lobortis lacus elit in diam. Donec consectetur laoreet sem, ac ultricies dui iaculis eget. Lorem ipsum dolor sit amet, consectetur adipiscing elit. Sed vel felis leo.&nbsp;</p>
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background-image: url(https://static.igem.org/mediawiki/2018/9/90/T--Valencia_UPV--GifHomeHardwareUPV2018.gif);"></div><p style="
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padding: 26px;">Find out how we made possible the automatization of printing genetic circuits on bacteria</p>
  
 
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Revision as of 14:07, 13 October 2018

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Synbio Has Never Been Easier

Access to Synthetic Biology by the interested layperson is currently hampered by several barriers, including a required background knowledge and availability of expensive and often bulky technological equipment. Printeria, a fully-equipped bioengineering device able to automate the process of printing genetic circuits in bacteria but made as simple and easy to operate as a domestic desktop printer, breaks down these barriers. It uses a digital microfluidic system creating little droplets that can be mixed and moved across predefined electrode paths on a PCB surface. Printeria combines this novel system with Golden Gate Technology, low-cost sensors and electronics, and a user-friendly software application. This way, the user is capable of assembling domesticated DNA parts in a one-step reaction and can control all biotechnological steps, from the assembly of parts and transformation to cell culture, with high accuracy. 

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Synbio Has Never Been Easier

Access to Synthetic Biology by the interested layperson is currently hampered by several barriers, including a required background knowledge and availability of expensive and often bulky technological equipment. Printeria, a fully-equipped bioengineering device able to automate the process of printing genetic circuits in bacteria but made as simple and easy to operate as a domestic desktop printer, breaks down these barriers. It uses a digital microfluidic system creating little droplets that can be mixed and moved across predefined electrode paths on a PCB surface. Printeria combines this novel system with Golden Gate Technology, low-cost sensors and electronics, and a user-friendly software application. This way, the user is capable of assembling domesticated DNA parts in a one-step reaction and can control all biotechnological steps, from the assembly of parts and transformation to cell culture, with high accuracy. Printeria opens the door to a world of applications affordable for the general public.

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Universitat Politècnica de València

Universitat Politècnica de València

Universitat Politècnica de València

Universitat Politècnica de València

CONTACT US igem.upv.2018@gmail.com