On the cover of @CellBiomat! New study by Kangfu Chen, @DanielWang_SC, @ShanaOKelly uses omics/engineering tools to better understand how tissues and cells behave in vivo, advancing both fundamental biology and better treatment options for cancer.
Metabolic programming promotes cellular uptake of extracellular vesicles and boosts in vivo therapeutic efficacy https://t.co/2nE3fstwtN #biomaterials#bioengineering
Thrilled to share our new study in Science Translational Medicine: a simple amino acid “cocktail” dramatically boosts LNP delivery efficacy in a liver inflammation model. 🧪📈
Built in the @biohub ecosystem and directly advancing our grand challenge to decode inflammation. 🔥
The Biohub team found that adding just 3 amino acids (methionine, arginine & serine) to LNP (liquid nanoparticle) injections boosts mRNA delivery up to 20x and pushes CRISPR editing efficiency to ~90% in a single dose. 🧬
Read the paper ⬇️ https://t.co/PF8f0ihNfJ
🚀 Check our new review in Nature Reviews Drug Discovery https://t.co/h7DnpyCGvY
Microsystems (microfluidics, biosensors, organ-on-chip) can tackle hurdles in #Immunotherapy - efficacy, safety & cost.
At @czbiohubCHI, we’re building next-gen microsystems to decode #inflammation
Take a peek at the latest issue of our Nexus newsletter:
✴️ a successful first BioEngineering Conference at #CZBiohubChi
✴️ the importance of algae biotechnology
✴️ new tech to deal with antibiotic-resistant bacteria
... and more! Read & subscribe ⤵️
https://t.co/cxxx3gw5Uo
Together with AI/ML experts, we explored how virtual cell models can advance scientific discovery. Rooted in community discussions, this 🆕 preprint lays out a roadmap for a large-scale, collaborative research agenda on AI-driven virtual cells https://t.co/FfM4GwJUKG
Self-healing materials, inspired by biological tissue, are now used in bioelectronics to protect devices and enhance durability.
This article covers their history, design, recent advances, and future in bioelectronics.
👉https://t.co/NmL6bzWfpf
The future of wearable devices for monitoring & analyzing tissue inflammation depends on self-healing materials for bioelectronic devices.
Check out this overview piece from #CZBiohubCHI scientists-on the inside cover of this week’s Advanced Materials!
https://t.co/M2I0VWvGZm
The future of wearable devices for monitoring & analyzing tissue inflammation depends on self-healing materials for bioelectronic devices.
Check out this overview piece from #CZBiohubCHI scientists-on the inside cover of this week’s Advanced Materials!
https://t.co/M2I0VWvGZm
Job Alert!🚀Join the Chan Zuckerberg Biohub – Chicago as Postdoc. Focus on TCR mechanisms & immune epitopes in a collaborative, interdisciplinary environment. Apply now! https://t.co/L53o1TtZcI🌟 #Biotech#Research#Postdoc#CZBiohub#Chicago