How do biological networks maintain tight regulation of variables while being subjected to an onslaught of perturbations?
We establish simple universal principles for maximal robust adaptation in all biomolecular systems.
https://t.co/8YSa47ohtS
#sysbio#synbio#cybergenetics
New preprint: Engineering Cybergenetic Cell-Based Therapies
We introduce a control framework for closed-loop cell therapies: engineered human cells that sense disease signals, compute control actions, and autonomously regulate therapeutic output.
https://t.co/C4Kyn7WW2G
Are you looking for a versatile and inexpensive illumination platform for optogenetics experiments?
Check out our new DIYA device... It's become the most popular platform in our lab for bacterial, yeast and mammalian optogenetics.
#synbio#optogenetics
https://t.co/txk715XLFH
Credit to the great team of authors, especailly @santkumar_14@anastassov for doing a marvelous job designing, building, and putting Diya to good use in the lab!
Looking for opportunities in synthetic biology? Come join our team!
Doctoral positions in mammalian synthetic biology for cell-based therapies.
@ETH_BSSE@ETH
https://t.co/DTvmWNkZen
@ETH_BSSE Your mission, should you choose to accept it, is to precisely select the environmental conditions that provide the gene expression levels needed for hatching your chosen dragon 🐉.... And while you're at it, please infer the underlying genetic circuit. 😅
At this year's #Scientifica23, researchers from the D-BSSE @KhammashLab organise a workshop for teenagers and young adults to learn about control theory and systems biology > https://t.co/fzLN7wDNKP
Please share and don't forget to book your free ticket!
Overflowing with gratitude for the incredible chance to push forward our cybergenetics research and pave the way for transformative medical applications. 🌟🧬 Exciting times ahead! #cybergenetics#syntheticbiology#controltheory