Agustín Mangiarotti

@mangiarotti.bsky.social

Assistant Researcher CIQUIBIC-CONICET Assistant Professor FCQ-UNC 🔬🧪🇦🇷 Biophysics of membranes & biomolecular condesates

This review with Agu @mangiarotti.bsky.social 🙏on a topic close to my heart -membranes&condensates- came out some time ago.Only after receiving the printed issue,I realized it's on the journal cover. It does not have much to do with plants, but droplets on thin surfaces is kind of what it is about.

BildBild
Max Planck Institute of Colloids & Interfaces (MPICI)@mpici.bsky.social · 2w ago

How do cells organize their crowded interior? A review by @dimovalab.bsky.social & @mangiarotti.bsky.social explores how membranes and biomolecular condensates shape each other via phase separation. Published in Nature Reviews Molecular Cell Biology: www.nature.com/articles/s41...

🧪🇦🇷 Excited to share our latest paper done together with Natalia Wilke, just out in Soft Matter! The take-home message: anchor lipids deserve to be treated as active membrane components when interpreting protein- and condensate-membrane interactions. doi.org/10.1039/D6SM...

NTA-Ni lipids affect membrane phase behavior and fluorescence of lipid-like dyes

The nitrilotriacetic acid group coordinated with nickel, NTA(Ni), is the standard chelator for purifying fusion proteins containing poly-histidine tags. The development of lipids with NTA(Ni) headgrou...

doi.org

How do biomolecular condensates🫧 interact with membranes? We show that dielectric permittivity contrast between coexisting phases directly governs condensate wetting behavior. 👉 preprint: bit.ly/4qBmVRx Permittivity matters.🧪🫧

Bild

1/3 📢 New work from our lab 📢 We uncover a unifying dielectric principle for biomolecular condensates! 💦Contrary to intuition, we find that it is not a condensate’s absolute polarity, but the permittivity contrast with its surroundings, that governs its affinity for membranes. #GUV #condensates

Bild