@MarquesLabi
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Senior research scientist at CNRS
Strasbourg and Lyon, France
Joined November 2018
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D-1 for official launching date of #TheGiantVesicleBook (bit.ly/305ByB1) at @CRCPress. 3 years of work with @DimovaLab, 30 chapters >70 contributors, hundreds of illustrations, thousands of references. #GiantVesicles will be your lipid system of choice!
Carlos Marques retweeted
🚀 Exciting News! Today marks the official launch of the ComeInCell MSCA Doctoral Network! 🎉 Join us as we embark on a journey to advance cellular research and innovation.
Check the press release: mpikg.mpg.de/6845600/launch-…
Excellent audience at the ORT "Atelier des Sciences" conference, kindly covered by alsacien newspaper @dnatweets . Thank you to professor J. Wolff for organizing, and to @ORTStrasbourg for support.
It was a pleasure to come to Wroclaw and talk about #lipids and #giantvesicles at the 2023 PANIC Summer School. Thank you @PiksaMarta for posting.
At the PANIC Summer School 2023, we had the pleasure of hosting world-class experts. For the participation we sincerely thank you!
Ji-Seon Kim (@Nano_Imperial ), Carlos Marques (@MarquesLab ), Bruno Therrien, Thomas Bürgi, Neil Robertson (@NeRoChem ), Jean Charles Ribierre.
Definitively amongst the grands that Philip quotes, here at 71 on a conference about liquids in 2002 on the Yangtze river, and still going strong. Household names in this generation got diluted by a massive expansion of the scientific communities.
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Merci à l'équipe de communication de l'@INC_CNRS pour la mise en valeur de ce projet avec @BehrendsLab et le soutien de @DFHUFA ! Travail fantastique d'Eulalie Lafarge et toute l'équipe de collaborateurs perso.ens-lyon.fr/carlos.mar…
#chimie ⚗️ #ResultatScientifique 📕 🔎 l Comment les champs électriques percent ils les membranes #cellulaires pour faire passer une substance thérapeutiqye par électroporation
🤝 @jmaddalu @CNRS_dr07 @LcEnsl @MarquesLab @CharlesSadron @BehrendsLab
➡️ buff.ly/3TTEJIT
Refuting the standard model of electroporation phys.org/news/2023-03-refuti… via @physorg_com
Electric fields open pores in biomembranes. But do we know why? Great fun working with
@BehrendsLab to start sorting this out.
@LcENSL
@CharlesSadron
@INC_CNRS
pnas.org/doi/10.1073/pnas.22…
Hydroperoxidized lipid membranes are softer - we knew that - but who would have guessed that they are more viscous? nature.com/articles/s42004-0…
@KuimovaGroup
@lorenz_lab
@MarquesLab
@LcENSL
@CharlesSadron
@impchemistry
@INC_CNRS
Antonio Stocco summarising work from @CharlesSadron about Giant Vesicles and active particles, from JMC2022 of SFP in LYon
Bye, founding father of lipid phase separation, master of microscopes, brother in science and companion in whiskey and cigar. @agumangia @DimovaLab
Carlos Marques retweeted
A terrible war against Ukraine started with impact on Europe and the world. Ukraine is fighting for their freedom and actually for security for the whole Europe. They need your support now! Follow the link to #StandWithUkraine Please RT!
bank.gov.ua/en/news/all/nats…
Carlos Marques retweeted
This work on Janus particles, giant vesicles and membrane pinning is now out in @ChemCommun @MpiciPotsdam Thanks again E. Ewins @MembraneEnzymo1, @LabRobinson, K.Han, B.Barti, O.Velev @NCState
pubs.rsc.org/en/content/arti…
Can we pin vesicle adhesion to half-wrap a particle? Yes we can: with a Janus particle. And because it is magnetic, we can drag the vesicle around @MpiciPotsdam Thanks E.Ewins @MembraneEnzymo1, @LabRobinson, K.Han, B.Barti, O.Velev @NCState
In bioRxiv: bit.ly/3nL9zo2
A mentor of my early career, a brilliant star in the firmament of scientists, has left us. @mcleish_t soothes our sadness by recalling the life and achievements of Mark Warner theguardian.com/science/2022…
via @franceinfo : Pollution chimique et plastique : quatre questions sur la dernière "limite planétaire" franchie par l'humanité francetvinfo.fr/monde/enviro…
@Louis_San a eu une démarche pour écrire cet article qu'il convient de saluer: il a contacté des scientifiques qui travaillent sur ce sujet après s'être renseigné auprès des organismes de recherche, CNRS et autres, et n'a pas hésité à creuser au-delà du superficiel spectaculaire.
Styrene oligomers, the end-degradation products of a major component of plastic pollution, alter the phase behavior of biomimetic membranes.
Join the online talk this Monday 4:00 PM CET at NIST (10:00 local time) about our findings. drive.google.com/file/d/1tc9… @INC_CNRS @Louis_San
In the talk this Monday I will discuss what happens to biomimetic cell membranes when they host these molecules.
inc.cnrs.fr/fr/cnrsinfo/poll…
Plastics shed small bits of polymers at the lower bottom of their degradation cascade.
For instance, in certain beaches, one can measure tens of grams of styrene oligomers per cubic meter of sand.
pnas.org/content/118/4/e2016…