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Stefan Köstler

@stefankoestler2025.bsky.social
136 followers 312 following 20 posts

PhD Candidate @zwickergroup.bsky.social & IMPRS-PBCS Fellow, studying the dynamics of active droplets 🧪💻 sites.google.com/view/stefan-koestl…

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Reposted by Stefan Köstler
Stefan Köstler @stefankoestler2025.bsky.social · 28/09/2026
🚨New Preprint with @zwickergroup.bsky.social ! Phase-separated condensates 🫧 often encounter compositional gradients. We show that these gradients generically lead to surface-tension-driven propulsion even in the absence of surfactants. 📃 arxiv.org/abs/2609.24529
Droplet moving in a chemical gradient.
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Stefan Köstler @stefankoestler2025.bsky.social · 28/09/2026
🚨New Preprint with @zwickergroup.bsky.social ! Phase-separated condensates 🫧 often encounter compositional gradients. We show that these gradients generically lead to surface-tension-driven propulsion even in the absence of surfactants. 📃 arxiv.org/abs/2609.24529
Droplet moving in a chemical gradient.
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Stefan Köstler @stefankoestler2025.bsky.social · 23/09/2026
New arXiv preprint! 🥳 (More info coming soon)
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Reposted by Stefan Köstler
Hirncabrio🦋 @hirncabrio.bsky.social · 06/09/2026
@tmette.bsky.social
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Stefan Köstler @stefankoestler2025.bsky.social · 12/08/2026
#SoFi2026 seen from the roof of the MPI-DS in Göttingen.
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Laboratory of Soft and Living Materials @SoftLiv_Cornell @softliv.bsky.social · 06/08/2026
Our new paper is out! We asked how small molecules influence biomolecular condensation. Our findings help identify molecules and rxns that regulate physiology and inform therapeutic development. Susceptibility and regulation of biomolecular condensates by solutes | PNAS www.pnas.org/doi/10.1073/...
pnas.org
PNAS
Proceedings of the National Academy of Sciences (PNAS), a peer reviewed journal of the National Academy of Sciences (NAS) - an authoritative source of high-impact, original research that broadly spans...
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Mesoscopic Physics of Life (MPoL) @m-pol.bsky.social · 06/08/2026
🚨 New preprint! From protein & RNA condensates to synthetic coacervates and DNA nanostars, vacuoles (dilute pockets inside droplets) show up everywhere. 🫧 We explain when and why they form. 🔬🧫 📄 arxiv.org/abs/2607.25743 w/ @boekhovenlab.bsky.social sky.social @kgoepfrich.bsky.social
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Ricard Alert Zenón @ricardalert.bsky.social · 03/08/2026
New paper! Inspired by gliding bacteria, we introduce active screws: Particles that self-propel by spinning around their propulsion axis. We show that active screws form active chiral nematics. With Debu Banerjee and @lauritzh.bsky.social @mpipks.bsky.social journals.aps.org/prresearch/a...
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David Brückner @davidbrueckner.bsky.social · 28/07/2026
How can morphogenesis produce complex outcomes, reproducibly? 🤔 We show: remodeling & growth allow buffering against noise & prevent elastic coarsening Led by Nico Romeo, in collab w/ @npmitchell.bsky.social 👉 arxiv.org/abs/2607.23907
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MPI for Multidisciplinary Sciences @mpi-nat.bsky.social · 28/07/2026
📢 PhD students: Don't miss Third Infinity 2026! 🗓 Sept. 23–25 📍 MPI-NAT Faßberg Campus, Göttingen 🎤 Talks & posters across life sciences, physics & chemistry 📋 organized by IMPRS for Physics of Biological and Complex Systems 📝 Register by August 1: thirdinfinity.mpg.de/registration... !
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Markus Deserno @markusdeserno.bsky.social · 23/06/2026
📣 Hear! Hear! 🦋 Behold this Bluetorial on a cool paper written with my PhD student Nathaniel Wesnak 🧪 If you want to dive into the rabbit hole of lipid flop-flop and its description as a stochastic process—here’s your TEASER TRAILER on some flippin’ awesome work: doi.org/10.1063/5.03... 1/26
doi.org
Stochastic process description of lipid flip-flop
Since lipid bilayers are self-assembled macroscopic aggregates, their constituent lipid molecules can spontaneously transition between the two leaflets. This so
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Jörg Enderlein @joergenderlein.bsky.social · 14/05/2026
Excited to share our latest work in @ScienceAdvances! 🔬 We’ve developed "dynaMIET"—a new spectroscopy technique that finally allows us to simultaneously measure 3D membrane dynamics in live cells with nanometer precision. www.science.org/doi/10.1126/...
science.org
Quantifying 3D live-cell membrane dynamics using dynamic metal-induced energy transfer spectroscopy (dynaMIET)
dynaMIET enables simultaneous measurement of lateral diffusion and vertical membrane fluctuations in live cells.
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Zwicker Group @zwickergroup.bsky.social · 30/04/2026
Our latest preprint at arxiv.org/abs/2604.26346 provides insights on chemically active mixtures that can produce mesmerizing patterns, such as this one:
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Anna Dornhaus @dornhaus.bsky.social · 16/04/2026
Preprint: What good is modeling? Introducing biology students to theory - arxiv.org/abs/2604.13344 - how to teach and think about what modeling contributes to science. How does it fit into the scientific method? This is often misunderstood.
arxiv.org
What good is modeling? Introducing biology students to theory
Theory and empirical science should be in constant dialogue, but often find it hard to understand one another. Here we describe a graduate-level university course we developed to improve matters. The ...
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Andriy Goychuk @andriygoychuk.bsky.social · 05/04/2026
Do different regions in the cell nucleus find each other by random motion or is there a directed component? In short: likely both. Below, I summarize a few predictions from a recently updated preprint from last June: doi.org/10.48550/arX.... (1/9) #biophysics #theory #active #chromatin #condensates
doi.org
Externally driven condensates show translation-induced polarization, directed coalescence, and anomalous diffusion in viscoelastic media
Phase separation into compositionally and physically distinct domains is ubiquitous in (non)living matter ranging from alloys and emulsions to biomolecular condensates in cells. The organization of th...
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Ricard Alert Zenón @ricardalert.bsky.social · 18/03/2026
Despite it being chaotic, active nematic turbulence can give rise to arrested labyrinthine patterns! Check out our new paper @physrevresearch.bsky.social! Work led by Ido Lavi, with Jean-François Joanny and Jaume Casademunt. journals.aps.org/prresearch/a...
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Laboratory of Soft and Living Materials @SoftLiv_Cornell @softliv.bsky.social · 28/02/2026
Our second Cornell-era preprint is also out! Kaarthik's paper discusses the gap between cellular and in vitro condensates. In cells, condensates are low-contrast (small partition coefficients), enabling a wide range of responses. Congrats, Kaarthik and the team! www.biorxiv.org/content/10.6...
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Laboratory of Soft and Living Materials @SoftLiv_Cornell @softliv.bsky.social · 28/02/2026
Happy to share our first preprints from work originating at Cornell! Takumi's paper describes how small molecules shift phase equilibria of condensates by focusing on the dilute-phase response. It shows how metabolites may tune stability and material properties. www.biorxiv.org/content/10.6...
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Stefan Köstler @stefankoestler2025.bsky.social · 30/01/2026
A great start to the new year! Our paper on how advection and reactions affect the coarsening of droplets got published in Physical Review Research. 🥳 📄 doi.org/10.1103/hdls...
doi.org
Advection selects pattern in multistable emulsions of active droplets
Controlling the size of droplets, for example, in biological cells, is challenging because large droplets typically outcompete smaller droplets due to surface tension. This coarsening is generally acc...
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Max Planck School Matter to Life @mattertolife.bsky.social · 14/01/2026
We’re excited to kick off 2026 with a rescheduled talk in the Matter to Life Lecture Series: “Droplets Come to Life” by MtL Fellow David Zwicker @zwickergroup.bsky.social from the Max Planck Institute for Dynamics and Self-Organization 🙌 Register here: us02web.zoom.us/webinar/regi...
Flyer for the lecture that takes place on January 21st at 3 pm CET
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Zwicker Group @zwickergroup.bsky.social · 08/01/2026
Our "Roadmap for Condensates in Cell Biology" is now available on arXiv: arxiv.org/abs/2601.03677 🎉 This article summarizes the interdisciplinary weekly discussions we had at our condensate workshop at KITP in the summer of 2025. Feedback is very welcome!
arxiv.org
Roadmap for Condensates in Cell Biology
Biomolecular condensates govern essential cellular processes yet elude description by traditional equilibrium models. This roadmap, distilled from structured discussions at a workshop and reflecting t...
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Jerelle Joseph @jerelleaj.bsky.social · 05/12/2025
Want to learn about how we use computational approaches at different scales to study biomolecular condensates? Check out our latest review, out in Advances in Physics X @juliamaristany.bsky.social @alinaemelianova.bsky.social @rcollepardo.bsky.social www.tandfonline.com/doi/epdf/10....
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Zwicker Group @zwickergroup.bsky.social · 17/12/2025
We're looking for a postdoc to strengthen our group! Please apply by January 15, 2026 if you're a fun and motivated person who likes theoretical modeling of biological processes by combining analytics and numerics. There is freedom in choosing projects! Details: www.ds.mpg.de/4110032/job_...
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Zwicker Group @zwickergroup.bsky.social · 15/12/2025
Since more than a decade, our group has been exploring chemically active droplets, which are exciting since their size can be controlled. Yet, we still do not fully understand this control even in the simplest models. Until a new preprint (arxiv.org/abs/2512.02542) spearheaded by postdoc Guido...
arxiv.org
Size control guidelines for chemically active droplets
Biological cells and synthetic analogues use liquid-liquid phase separation to dynamically compartmentalize their environment for various applications. In many cases, multiple droplets need to coexist...
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Jeremy Schmit @schmitbiophysics.bsky.social · 01/12/2025
New publication! How to read the curves in biomolecular phase diagrams! A collaboration between the Schmit Group and Jonathon Ditlev, Les Loew, and @ani-chattaraj.bsky.social. 1/7 pubs.acs.org/doi/10.1021/...
pubs.acs.org
Biomolecular Phase Boundaries are Described by a Solubility Product That Accounts for Variable Stoichiometry and Soluble Oligomers
The solubility product is a rigorous description of the phase boundary for salt precipitation and has previously been shown to qualitatively describe the condensation of biomolecules. Here we present a derivation of the solubility product showing that the solubility product is also a robust description of biomolecule phase boundaries if care is taken to account for soluble oligomers and variable composition within the dense phase. Our calculation describes equilibrium between unbound monomers, the dense phase, and an ensemble of oligomer complexes with significant finite-size contributions to their free energy. The biomolecule phase boundary very nearly resembles the power law predicted by the solubility product when plotted as a function of the monomer concentrations. However, this simple form is concealed by the presence of oligomers in the dilute phase. Accounting for the oligomer ensemble introduces complexities to the power law phase boundary including re-entrant behavior and large shifts for stoichiometrically matched molecules. We show that allowing variable stoichiometry in the dense phase expands the two phase region, which appears as curvature of the phase boundary on a double-logarithmic plot. Furthermore, this curvature can be used to predict variations in the dense phase composition at different points along the phase boundary. Finally, we show how the solubility product power law can be identified in experiments by using dilute phase dissociation constants to account for the oligomer ensemble.
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Zwicker Group @zwickergroup.bsky.social · 24/11/2025
Two more pre-prints from the group 🎉 Riccardo explored how cells could control surface condensates by regulating bulk exchange (arxiv.org/abs/2511.03619). Filipe studied the impact of non-local interactions onto phase separation (arxiv.org/abs/2511.05214). Some more details in the thread:
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Sam Wilken @samwilken.bsky.social · 21/11/2025
We’re excited to share our new work in Soft Matter: doi.org/10.1039/D5SM... We demonstrate how in vitro transcription can drive biomolecular phase separation — and how that phase separation in turn regulates transcription.
doi.org
Condensation and activator/repressor control of a transcription-regulated biomolecular liquid
Cells operate in part by compartmentalizing chemical reactions. For example, recent work has shown that chromatin, the material that contains the cell's genome, can auto-regulate its structure by util...
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Zwicker Group @zwickergroup.bsky.social · 21/11/2025
Our review on the physics of phase separation in cells has been published by Rep. Prog. Phys. 🎉 doi.org/10.1088/1361... We hope that the text and citations are helpful for anyone interested in physical descriptions of condensates in cells!
doi.org
Physics of droplet regulation in biological cells - IOPscience
Physics of droplet regulation in biological cells, Zwicker, David, Paulin, Oliver W, ter Burg, Cathelijne
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Mesoscopic Physics of Life (MPoL) @m-pol.bsky.social · 03/11/2025
New pre-print with Jacqueline Janssen and Frank Jülicher! We extend the Lifshitz-Slyozov-Wagner (LSW) theory by matter supply, and find a novel universal law governing coarsening kinetics, valid for any constant matter supply in the interface-resistance-limited regime. 📄: arxiv.org/abs/2510.21552
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Giacomo Bartolucci (he) @gbart.bsky.social · 03/10/2025
Good news in rough times: Our work on generalising Lifshitz-Slyosov-Wagner (LSW) theory to active systems, led by the all-mighty Jonathan Bauermann, is out on PRL!! Special thanks to Christoph Weber @m-pol.bsky.social and Frank Jülicher. doi-org.sire.ub.edu/10.1103/f5x9...
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Stefan Köstler @stefankoestler2025.bsky.social · 02/10/2025
New preprint 🥳 In our new paper, we show that “Advection selects pattern in multi-stable emulsions of active droplets” — which provides a path toward controlling regular arrangements of droplets. 🧵 📄 arxiv.org/abs/2510.00827
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Noah Ziethen @nziethen.bsky.social · 29/09/2025
New preprint 🎉 What began as Frieder Johannsen’s bachelor thesis in the @zwickergroup.bsky.social (which I had the pleasure to supervise) evolved into our latest paper: “Chemically Active Liquid Bridges Generate Repulsive Forces” — unlike passive ones, which attract. 📄 arxiv.org/abs/2509.18777
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eLife @elife.bsky.social · 31/07/2025
“Journals and peer review are unlikely to change for the better if the companies that operate scientific indexes and citation databases continue to stifle innovation.” Read our guest post in DORA: buff.ly/EGDbskH
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Zwicker Group @zwickergroup.bsky.social · 16/07/2025
Our institute turned 100 years today! We had a fantastic celebration with scientific talks by Howard Stone and Christina Marchetti. 🎉
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WeberLab@McGill @weber-lab.bsky.social · 11/07/2025
And that concludes our #kitp program on biomolecular condensates 😢 Wow, what an *incredible* experience, and unique place to learn and think and grow! 🤓
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Jeremy Schmit @schmitbiophysics.bsky.social · 28/06/2025
Can't say enough about the Condensates program at @kitp-ucsb.bsky.social. Invigorating discussions, fantastic facilities, and a beautiful location (a place I consider "home"). Thanks to @weber-lab.bsky.social, @jerelleaj.bsky.social, @zwickergroup.bsky.social, and Frank Julicher for organizing!
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Stefan Köstler @stefankoestler2025.bsky.social · 14/06/2025
Just leaving Paris after 3 weeks of summer school on combining maths and physics to tackle #ActiveMatter. I gained new perspectives, met wonderful people and had fascinating discussions. It was great to communicate my research to so many interested people! And of course, Paris was just wonderful!
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WeberLab@McGill @weber-lab.bsky.social · 14/06/2025
@jerelleaj.bsky.social, master painter 👩🏽‍🎨 of the blackboard 👩🏽‍🏫, in action! 🤩 She is amazing at capturing the essence of our complex, meandering (and sometimes contentious) discussions @kitp-ucsb.bsky.social
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Zwicker Group @zwickergroup.bsky.social · 30/05/2025
It’s been a lot of fun talking about chemically active condensates to such an attentive and motivated crowd!
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Zwicker Group @zwickergroup.bsky.social · 28/05/2025
We updated our pre-print on equilibria in multicomponent mixtures: arxiv.org/abs/2405.01138 In particular, we added the figure below, which shows that such mixtures exhibit countless metastable states between a metastable homogeneous state and the equilibrium with many phases.
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Young Biophysicists Meeting @youngbiophymeet.bsky.social · 07/05/2025
Huge thanks to all the incredible speakers who have shared their research at the Young Biophysicists Meeting so far! Here's a glimpse. See you in the next session!
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Martina Winkler @martinawinkle14.bsky.social · 06/05/2025
Ein großes Problem für den Kampf gegen #Machtmissbrauch ist der Mangel an verlässlichen Daten. Umso wichtiger ist die Forschung so engagierter Wissenschaftler*innen wie @leising.bsky.social @janalasser.bsky.social oder Andrea Kübler. www.nature.com/articles/d41...
nature.com
Can Germany rein in its academic bullying problem?
Researchers and administrators are exploring ways to restructure a rigid hierarchy that can breed power abuses.
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Stefan Köstler @stefankoestler2025.bsky.social · 16/03/2025
I am looking forward to tell you about my research at #DPG. Come by my poster on wednesday to learn how coarsening of active droplets can be controlled by active reactions!
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Zwicker Group @zwickergroup.bsky.social · 03/03/2025
We have an open postdoc position in our group! We seek motivated and fun people with a background in theoretical biological physics to work on projects revolving around pattern formation, cell biology, and particularly #condensates. Details: www.ds.mpg.de/4078435/job_... #TheoBiophysicsPosition
ds.mpg.de
Postdoctoral Position (m/f/d) | Biological Physics
For the independent research group “Theory of Biological Fluids” headed by Dr. David Zwicker we seek to fill a Postdoctoral Position (m/f/d) in Biological Physics.
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Zwicker Group @zwickergroup.bsky.social · 25/02/2025
We published a one-page article in Nat. Chem. Eng. on phase separation in multicomponent mixtures: rdcu.be/ea4Ts The article exposes our latest results, which indicate such mixtures are generically multistable and imply that states with various different droplets (or none at all) are all stable.
rdcu.be
To mix or not to mix?
Nature Chemical Engineering - David Zwicker discusses the delicate balance between entropy and enthalpy that determines whether fluids comprising many components mix or phase separate.
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Max Planck Institute of Molecular Cell Biology and Genetics @mpi-cbg.de · 30/01/2025
MPI-CBG director Anthony Hyman @hymanlab.bsky.social will deliver the EMBO Lecture at the 49th FEBS Congress in Istanbul in July 2025. Read an interview with him, where he shares some of his inspirations and interests. network.febs.org/posts/anthon...
network.febs.org
Anthony Hyman: "...the realization of phase separation as a critical organizing principle in cellular biology has transformed the field."
From a 1920s book to nanoscopy – Anthony Hyman, who will deliver the EMBO Lecture at the 49th FEBS Congress in Istanbul in July 2025, shares some of his inspirations and interests.
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Hyman Lab @hymanlab.bsky.social · 23/01/2025
"Mysterious Blobs Found inside Cells Are Rewriting the Story of How Life Works" Exciting times ahead! www.scientificamerican.com/article/myst...
scientificamerican.com
Mysterious Blobs in Cells Are Changing the Way We Understand Life
Tiny specks called biomolecular condensates are leading to a new understanding of the cell
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Zwicker Group @zwickergroup.bsky.social · 24/01/2025
We wrote a review on the "Physics of droplet regulation in biological cells": arxiv.org/abs/2501.13639 Beside the basic #physics of phase separation, we discuss three aspects that separate cellular from traditional droplets:
A schematic picture of a cell, showing condensates, a nucleus and the cytoskeleton.
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Zwicker Group @zwickergroup.bsky.social · 23/01/2025
We just updated our preprint on size-control of condensates by electrostatic effects: arxiv.org/abs/2409.15599 This joint work with the group of @jerelleaj.bsky.social shows that electrostatic effects matter, even when one would naively expect that screening by salt is strong.
arxiv.org
Condensate Size Control by Net Charge
Biomolecular condensates are complex droplets comprising diverse molecules that interact using various mechanisms. Condensation is often driven by short-ranged attraction, but net charges can also med...
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