Marius Trollmann
@m-a-r-i-u-s.bsky.social
28 followers 73 following 10 posts
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We’ve updated our article “Decoding pH-Driven Phase Transition of Lipid Nanoparticles” on bioRxiv!
The cpHMD simulations now cover longer timescales, and we added new simulations with the molecule TNS. Could it modulate the surface charge?
Read the full story:
www.biorxiv.org/content/10.1...
Structure of a LNP-mimetic system at pH 7 containing mRNA.
Welcome to the cozy season! 📘📗📕📙
#booknook #bakerstreet #Moers #books
I was pleasured to present our latest Research on titratable aminolipids at the 3rd NHR conference! 😊
#HPC #science #simulations #phd
Reposted by Marius Trollmann
Reposted by Marius Trollmann
biomemphys.bsky.social
An Editor of some high-impact Journal asking for data from a mouse model - in an all-atom simulation study… Our answer:
Reposted by Marius Trollmann
biomemphys.bsky.social
Wir suchen Dich!
Die AG Computational Biology @fau.de sucht ab Jan 2026 eine Teamassistenz (m/w/d, 50% TV-L E 8).
Organisation, Verwaltung & Kommunikation sind dein Ding? Dann bewirb dich bis 16.09.2025!
👉 Mehr Infos:
www.jobs.fau.de/jobs/teamass...
Teamassistenz für die Arbeitsgruppe Computational Biology (m/w/d)
www.jobs.fau.de
Reposted by Marius Trollmann
biomemphys.bsky.social
We're hiring! Join our team at @fau.de ! We are seeking an enthusiastic candidate for a PhD position in our lab specializing in cutting-edge theoretical and computational membrane biophysics.
Please send your CV, and a statement of research interests via email.
www.biomemphys.nat.fau.de/jobs/
Reposted by Marius Trollmann
biomemphys.bsky.social
Die Vorbereitungen zur Langen Nacht der Wissenschaften am 25. Oktober laufen an…
#LNdW2025 @fau.de
Reposted by Marius Trollmann
polenz.bsky.social
Unfortunately, not everyone who needs these treatments takes advantage of them #Trump #Vance
In collaboration with the groups of ‪‪@lmoeckl.bsky.social‬ ‬, Thisbe Lindhorst and Vahid Sandoghdar! 😊
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Excited to share our latest work on the dynamics of synthetic glycolipids in model membranes! 🤩
@biomemphys.bsky.social!

Bottom-up Investigation of Spatiotemporal Glycocalyx Dynamics with Interferometric Scattering Microscopy | Journal of the American Chemical Society pubs.acs.org/doi/full/10....
Bottom-up Investigation of Spatiotemporal Glycocalyx Dynamics with Interferometric Scattering Microscopy
Over recent decades, the glycocalyx, an extracellular organelle composed of a multitude of glycolipids, glycoproteins, proteoglycans, and glycoRNA, has gained considerable interest in cellular biology. While research in this field has revealed its tremendous importance in ever more aspects of physiological and pathological cellular processes, many of the principles that govern the role of the glycocalyx in these processes on a molecular level are still unknown. In order to unravel the fundamental laws underlying glycocalyx function, new technologies are required that enable the distinction between individual subprocesses within the intricate environment of the glycocalyx. Here, we establish an experimental platform to investigate the dynamics of the glycocalyx at the nanometer and microsecond length and time scales in a bottom-up fashion. We synthesized defined oligosaccharides and installed them on supported lipid bilayers. This way, synthetic glycolipids were assembled to glycocalyx model systems with tunable properties. By investigating these tunable model systems with interferometric scattering (iSCAT) microscopy, we gain access to the required spatiotemporal resolution. We found a strong correlation between the molecular structure of several investigated model glycans and global dynamics of the system. Our findings are corroborated by atomistic molecular dynamics simulations and coarse-grained Brownian dynamics simulations. Our results provide the first direct experimental evidence on the relationship between glycan structure, organization, and dynamics, offering a robust and versatile basis for a quantitative understanding of glycocalyx biology and physics at the molecular level.
pubs.acs.org
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We’ve updated our article “Decoding pH-Driven Phase Transition of Lipid Nanoparticles” on bioRxiv!
The cpHMD simulations now cover longer timescales, and we added new simulations with the molecule TNS. Could it modulate the surface charge?
Read the full story:
www.biorxiv.org/content/10.1...
Structure of a LNP-mimetic system at pH 7 containing mRNA.
Reposted by Marius Trollmann
biomemphys.bsky.social
@biomemphys.bsky.social lab at #EBSA2025 in Rome! Happy to discuss recent work on membranes and LNPs at Posters and in Talk! @m-a-r-i-u-s.bsky.social @fau.de
Reposted by Marius Trollmann
biomemphys.bsky.social
How many theoreticians do you need to unmount a kitchen? @fau.de
Reposted by Marius Trollmann
biomemphys.bsky.social
New study alert, published in PNAS! Our team revisits lipid nanoparticle composition and structure, challenging coarse-grained simulation approaches that may mask crucial pH-driven phase transitions. Discover how setups may bias LNP structures #LNP @fau.de
www.pnas.org/doi/10.1073/pnas.2422995122
Reposted by Marius Trollmann
florianaigner.at
Ich habe zusammen mit ChatGPT ein Sonett über die Bedrohung der Demokratie durch Tech-Bros geschrieben. Und jetzt weiß ich auch nicht mehr, was ich denken soll.
The fragile flame of freedom flickers low,
Its steady light consumed by shadows deep.
Where once the people's will had room to grow,
Now gilded towers rise while dreamers sleep.
The streets grow quiet as the markets roar,
The people lost in digital despair.
No votes, no voice, but data to adore,
Their power grows while we must gasp for air.
Will oligarchs decide the terms of hate,
And leave us slaves within their gilded dreams?
Shall silicon and dollars write our fate,
And bind us all and glue us to their screens?
Beware, for tech may burn our hope to dust—
In circuits cold, no justice can we trust.
Reposted by Marius Trollmann
biomemphys.bsky.social
🚨 Preprint Alert! 🚨
Check out our new book chapter on Constant-pH MD Simulations of Lipids! Learn how to use CpHMD simulations to study pH-dependent behavior of aminolipids in lipid nanoparticles for drug delivery. 💊🧬
#membranes #LNP @m-a-r-i-u-s.bsky.social @fau.de
biorxiv.org/cgi/content/...