NTT Research Assistant Professor or Postdoctoral Scholar

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vitrupo (@vitrupo)

의학을 소프트웨어처럼 다루는 ‘프로그래머블 메디슨’ 비전이 소개됐다. 질병 관련 유전자를 찾아내고, 단백질을 설계한 뒤, 건강한 복사본을 삽입해 개인 맞춤 치료를 구현할 수 있다는 내용으로, 정밀의료와 생명공학 AI의 가능성을 강조한다.

https://x.com/vitrupo/status/2043185880115073492

#medicine #biotech #personalizedmedicine #proteinengineering #ai

vitrupo (@vitrupo) on X

Medicine is becoming programmable. Basecamp Research CEO Glen Gowers says we can now identify the gene behind a disease, design a protein, and insert a healthy copy. Personalized medicine has been talked about for decades. Now we can program it.

X (formerly Twitter)

⚛️ Could life itself be a quantum phenomenon disguised as biology?

🔗 Quantum Biology Using Ultrafast Integrative and Molecular Engineering Tools: A Perspective. Computational and Structural Biotechnology Journal (CSBJ). DOI: https://doi.org/10.34133/csbj.0024

📚 CSBJ Quantum Biology and Biophotonics: https://spj.science.org/journal/csbj/qbio

#QuantumBiology #QuantumPhysics #MolecularBiology #ProteinEngineering #Biophysics #Biochemistry #Bioinformatics #SystemsBiology #MolecularDynamics #Lifesciences

NTT Research Assistant Professor or Postdoctoral Scholar

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Can the functions of #metalloenzymes be further improved using non-canonical amino acids?

In her talk at #Biochemistry2026, Alexandra Deliz Liang talked about the usage of genetic code expansion in order to improve the activity of metalloenzymes using e.g. hydrophobic tuning.

https://www.biorxiv.org/content/10.1101/2025.02.09.636911v1
#Chemistry #ChemBio #Biochemistry #BioinorganicChemistry #ProteinEngineering
CC: @gdch, @GDCh_BioChem

Alexandra Deliz Liang gave an exciting talk at #Biochemistry2026. She talked about her group's research on "Metalloenzyme engineering with genetic code expansion".

https://www.biorxiv.org/content/10.1101/2025.02.09.636911v1
#Biochemistry #Chemistry #ChemBio #ProteinEngineering #Metalloenzyme
CC: @gdch

Synthetic Biology for Light-Activated Smart Materials

Design and characterise light-responsive proteins and demonstrate light-controlled behaviour of cell-free biology in materials.

#SynBio, #StructuralBiology, #ProteinEngineering, and #biomaterials.

#PhD Studentships are fully funded for 4yrs, with minimum of 3 months at the industry partner. Funding for home (UK) students = tax-free stipend (indicative in year 1 in 2026-27 (£21,383), research costs and tuition fees.
https://www.findaphd.com/phds/project/synthetic-biology-for-light-activated-smart-materials/?p193808

How I Built a Machine Learning Tool to Predict Drug Manufacturing Failures

A bioprocess engineer's journey into machine learning and why the pharmaceutical industry desperately needs this bridge When I tell people I work in bioprocess engineering, I usually get blank stares. When I explain that I help manufacture proteins in giant tanks for therapeutic use, the response is often: "Oh, like brewing beer?" Not quite. But close enough. What I don't usually mention is that I've been teaching myself machine learning on nights and weekends. Not because it's trendy, but […]

https://kemal.yaylali.uk/from-bioreactors-to-ai-how-i-built-a-machine-learning-tool-to-predict-drug-manufacturing-failures/

How I Built a Machine Learning Tool to Predict Drug Manufacturing Failures – Kemal's

Inito Secures $29M To Build Next-Gen AI-Engineered Home Diagnostics - News Upturn

Inito, the India-based health-tech company known for pioneering at-home hormone testing, has raised $29 million in Series B funding, marking a significant

News Upturn
Inito Raises $29M Series B to Advance AI-Powered At-Home Diagnostics – Tycoon World

Inito, the India-based health-tech company known for pioneering at-home hormone testing, has raised $29 million in Series B funding, marking a significant

Tycoon World