Papadopoulos @ HHU
@athanasios-ppdpls.bsky.social
Passionate Scientist Bioengineering // Biochemistry // Structural Biology // Microbiology // Biosensor //Creation // Membranes and Lipids // Astrobiology
As we head into the summer break, it’s a good time to pause, recharge, and reflect. Wishing all a wonderful summer holiday. Enjoy the well-deserved break, and I look forward to continuing our journey toward excellent science together after the summer. Happy Summer Holidays! ☀️🥗🌴🚵🏊🏼♂️🌊🏝️🌴🏕️🏖️
OK, not a "tremendous breakthrough", but it is nice to have it completed - the first project in the group, started after moving to @hhu.de years ago, as a part of CRC 1208 (1st C is for "collaborative"). Thanks to all the co-authors for the joint effort and resilence ✊🤓 www.jbc.org/article/S002...
Conformational dynamics of the membrane-anchored foldase LipH from Pseudomonas aeruginosa governs recognition and release of its client lipase
The lipase LipA from Pseudomonas aeruginosa is an extracellular enzyme that plays an important role in bacterial infections. Prior to its export via the type II secretion system, LipA requires the cog...
jbc.org
Excited to share our latest publication!🚀🙏🏼🤩 We present ATPLyzer, an advanced ratiometric biosensor that is a clear step forward in sensor-related ATP-research, opening new perspectives for future applications. 📄 advanced.onlinelibrary.wiley.com/doi/10.1002/...
ATPLyzer—An Advanced Ratiometric Multi‐Color Biosensor for Long‐Term Monitoring of ATP Dynamics
ATPLyzer is a family of genetically encoded ratiometric biosensors developed for real-time monitoring of intracellular ATP dynamics in living cells. Using a Matryoshka design with single-wavelength e....
advanced.onlinelibrary.wiley.com
Science thrives on collaboration. Alongside outstanding colleagues, I recently had the privilege of contributing to three manuscript submissions within a week! A reminder that progress is built through shared knowledge!Thx #Science #Research #Collaboration #Teamwork #AcademicResearch #GlobalScience
🧠 A team led by erturklab.bsky.social has developed “MouseMapper”, an AI-based method, that analyzes entire mouse bodies down to cell level. Light-sheet microscopy & #DeepLearning reveal nerve pathways, immune cells, and organs, also providing clues to unknown nerve damage in #obesity. #LMU #AI
Artificial intelligence analyzes whole mouse bodies down to cell level
A team led by LMU researcher Ali Ertürk finds evidence of previously unknown nerve damage in obesity.
lmu.de
Research teaches you patience, resilience, and curiosity. As a young researcher, you learn that progress takes time — but every challenge, failed experiment, and small breakthrough helps you grow! Stay curious and trust the process. 🔬✨ #Research #STEM #Science #Innovation #Curiosity #AcademicLife
Synthetic protein engineering is opening a new era in biotechnology. AI + synthetic biology becoming one of the most powerful combinations in science. Not only for image creation! Excited to keep learning in this field. 🚀 #ProteinEngineering #Biosensors #Bioengineering
Antiprotonen sind auf der Straße: Ein Team von Physikerinnen und Physikern um Prof. Dr. Stefan Ulmer @hhu.de hat weltweit erstmals Antiprotonen in einer mobilen Falle transportiert, zunächst auf dem CERN-Gelände. Ziel in ein paar Jahren: Düsseldorf. www.hhu.de/news-einzela...
We Are very happy that our Paper was published. Thank to everyone involved pubs.acs.org/doi/10.1021/... @mibinet.bsky.social @mfeldbruegge.bsky.social @frunzkelab.bsky.social
A Novel Biosensor for Ferrous Iron Developed via CoBiSe: A Computational Method for Rapid Biosensor Design
Genetically encoded biosensors enable the monitoring of metabolite dynamics in living organisms. We present CoBiSe, a computational biosensor design approach using Constraint Network Analysis to ident...
pubs.acs.org
I feel very grateful that our recent publication on rapid biosensor creation has been announced by HHU (Heinrich Heine University Düsseldorf). 🍀🙏🏼🤩🧪🦠🧫🔬 www.hhu.de/news-einzela...
Strukturanalyse: Veröffentlichung in ACS Sensors
Um Stoffwechselprozesse zu verstehen, ist es wichtig, einzelne wichtige Elemente in lebenden Organismen nachweisen zu können. Forschenden der Heinrich-Heine-Universität Düsseldorf (HHU) entwickelten n...
hhu.de
✨ I am thrilled to share ✨ that our paper on computational biosensor design has just been published! Huge thanks to all co-authors and collaborators for the great teamwork and dedication throughout this journey! 🙌 📄 Read the paper here: pubs.acs.org/doi/10.1021/...
A Novel Biosensor for Ferrous Iron Developed via CoBiSe: A Computational Method for Rapid Biosensor Design
Genetically encoded biosensors enable the monitoring of metabolite dynamics in living organisms. We present CoBiSe, a computational biosensor design approach using Constraint Network Analysis to ident...
pubs.acs.org