By Inc. O'Reilly Media
BioCoder is a quarterly e-newsletter for DIYbio, artificial bio, and something comparable. You’ll discover:
- Articles approximately fascinating tasks and experiments, akin to the gleaming plant
- Articles approximately instruments, either these you purchase and people you build
- Visits to DIYbio laboratories
- Profiles of key humans within the community
- Announcements of occasions and different goods of interest
- Safety guidelines and pointers on sturdy laboratory practice
- Anything that’s attention-grabbing or valuable: you inform us!
And BioCoder is loose (for the time being), until you will want a dead-tree model. We’d like BioCoder to develop into self helping (maybe even profitable), yet we’ll fear approximately that once we’ve acquired a couple of concerns below our belt.
If you’d prefer to give a contribution, ship electronic mail to BioCoder@oreilly.com. let us know what you’d love to do, and we’ll get you started.
Read Online or Download BioCoder #5: Fall 2014 PDF
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Additional resources for BioCoder #5: Fall 2014
In addition, the yearly “Startup Ecosystem” event will be held on Friday, November 15th in Mission Bay, San Francisco. This event offers a focal point for the syn bio startup community to meet and hear about the latest advances in the field and network with potential investors and partners. All are welcome to attend, and discounts to all our events are available to biohackers.
We are excited to announce Build My Lab, a DIY lab equipment design competition hosted by Tekla Labs and Instructables. Tekla Labs is a UC Berkeley–based nonprofit organization striving to empower scientists worldwide by providing online instructions for building laboratory equipment from locally available materials. Submit your designs for laboratory equipment from September 2nd to December 16th for your chance to win one of our fantastic prizes including a 3D printer, dremels, and more. To find out more and keep up to date on all things Tekla, like us on Facebook or follow us on Twitter @teklalabs.
Where the two come in contact, the alginate will solidify, trapping the cells in a biocompatible matrix. Now imagine what crazy things you could do with cells that are engineered to express alginase under specific conditions so they can resculpt the 3D matrix that holds them in place. Add in some cell-to-cell communication, chemotaxis, and bacterial cellulose biosynthesis pathways, and you have yourself a complete toolbox for 3D pattern formation. The possibilities are endless. This project has been an often chaotic and organically evolving collaboration between dozens of people.