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David Brückner

@davidbrueckner.bsky.social
834 followers 518 following 127 posts

Assistant Professor @biozentrum.unibas.ch • Theoretical biophysics • Postdoc ISTAustria, PhD LMU Munich, MSc Cambridge University www.biozentrum.unibas.ch/brueckner

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Reposted by David Brückner
Maria Hondele @mariahondele.bsky.social · 29/09/2026
Nuclear speckles are “hot”, but how do they actually sequester mRNPs? We find that stalled mRNPs are retained in nuclear speckles by a combinatorial RNA-binding protein network. www.biorxiv.org/content/10.6...
biorxiv.org
A combinatorial pre-mRNP retention factor network couples nuclear speckle architecture to splicing quality control
Cells must prevent incompletely spliced transcripts from entering the cytoplasm, yet how splicing status is recognized and converted into selective nuclear retention remains unclear. Here, we identify...
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BPPB Seminar Series @bppbseminar.bsky.social · 23/09/2026
Please join BPPB on Fri Sept 25 @ 11 ET for talks by David Brückner @davidbrueckner.bsky.social (Information flow in self-organized developmental systems) and Ofer Kimchi (The fast search for an RNA target within the complex soup of the cell). For more info, visit sites.google.com/view/bppb-se....
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Reposted by David Brückner
Maria Hondele @mariahondele.bsky.social · 18/09/2026
The heatwave is finally over - just in time for our “Frosty Foci” to finally come online! ❄️🦠 We found that E. coli builds a transient nucleolus-like ribosome biogenesis compartment during cold adaptation, when RNA (mis)folding makes ribosome biogenesis challenging.
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Alex Schier @schierlab.bsky.social · 08/09/2026
The first Danionella paper from the lab. Danionella cerebrum is transparent, so you can see all of the internal organs. But what sensory information are the organs sending to the brain? In our new preprint, Emily Bayer wanted to find out. 1/4 www.biorxiv.org/content/10.6...
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Kazuhiro Maeshima @kazu-maeshima.bsky.social · 08/09/2026
Is euchromatin really “open”? 🧬 Using super-resolution imaging🔬 our new study @natgenet.nature.com reveals: Euchromatin forms condensed domains in live cells. Cohesin constrains them and prevents domain mixing for proper transcriptional insulation🚧 🔗 www.nature.com/articles/s41... (1/2)
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Anh Hoang Le, PhD 🏳️‍🌈🏴󠁧󠁢󠁳󠁣󠁴󠁿🇻🇳 @anhhle2702.bsky.social · 07/09/2026
Very happy to share my postdoc paper is out now in @natcellbio.nature.com titled "Tissue flow acts as a guidance cue for immune cell polarization and directional migration". If you love imaging and immune cells, this is for you! #microscopymonday www.nature.com/articles/s41... A 🧵: 1/n
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Ricard Alert Zenón @ricardalert.bsky.social · 08/09/2026
New paper out @natcellbio.nature.com! In embryos, immune cell migration is guided by the surrounding tissue flow. In turn, tissue flow is captured by active wetting theory, generalized to include influx from the upper cell aggregate! Check the thread below! 👇 www.nature.com/articles/s41...
nature.com
Tissue flow acts as a guidance cue for immune cell polarization and directional migration - Nature Cell Biology
Le et al. show that in Xenopus embryos, local ectodermal tissue flows provide a directional cue that polarizes and guides embryonic myeloid cells migration via cell-on-cell interactions.
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Anton Goloborodko @golobor.bsky.social · 03/09/2026
1/ out in @science.org! We found a new asymmetry in large-scale chromosome structure: sister chromatids are shifted by hundreds of kb in the 5′→3′ direction of their inherited strands! A close collaboration w/ @gerlichlab.bsky.social , led by @flaviacorsi.bsky.social www.science.org/doi/10.1126/...
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Development @dev-journal.bsky.social · 03/09/2026
Biophysics of lumen morphogenesis Read this Review from our special issue #DevSIextracellular by Byung Ho Lee, @hiraiwatetsuya.bsky.social, Masaki Sano, Alf Honigmann, Daniel Riveline, @anne-grapin.bsky.social and colleagues. doi.org/10.1242/dev....
Physical principles governing lumen formation and tissue morphology. (A) A lumen surrounded by an epithelial cell layer is shaped by the balance between luminal pressure and mechanical resistance from the tissue and the ECM layers. Ion pumping (Jion) generates a gradient of ions across the monolayer and an osmotic pressure difference (ΔΠ). Water can enter through a flux (Jwater), which generates a hydrostatic pressure difference, ΔP, that can expand the lumen. This hydrostatic pressure is opposed by cortical tensions at the apical, basal and lateral cell surfaces, respectively (γapical, γbasal and γlateral), by cell–cell adhesion, nadh, and by the elastic and viscous properties of both the tissue and the ECM. The detailed inset illustrates how cell division time and tissue osmolarity contribute to the evolving mechanical state of the organoid. Osmotic pressure triggers the generation of hydrostatic pressure, which is faced by the cell monolayer and might, in turn, increase its mass by proliferating. Timescales of increase in luminal volume, cell proliferation, tissue and ECM viscosities contribute to determining the lumen shape. (B) Young–Laplace law applied to the curved epithelial/luminal interface. The pressure difference across the tissue layer depends on cortical tension and curvature according to the Young–Laplace equation (Box 1). Here, R1 and R2 are the two principal radii of curvature of the curved interface. They originate from the fact that a three-dimensional surface can bend along two independent directions. For a spherical lumen, the two radii are equal, whereas for an irregular or elongated lumen, they may differ locally.
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Ricard Alert Zenón @ricardalert.bsky.social · 02/09/2026
New preprint! We found an active wetting transition in cell aggregates. We obtain an active Young-Dupré condition, which allows us to capture states of partial and complete wetting. With group members MJ Franco-Oñate and Hanno Hennighausen! arxiv.org/abs/2608.28912
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David Brückner @davidbrueckner.bsky.social · 10/08/2026
If you're looking for a PhD position, or know someone looking checkout our interdisciplinary PhD Fellowship program! We are always looking for talented students with a physics or computational background to join our group to work on the physics of living systems!
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Janani Durairaj (Jay) @ninjani.bsky.social · 28/08/2026
Some exciting news: I'm joining the University of Lausanne @unil.bsky.social @dbc-unil.bsky.social as an Assistant Professor next month 🎉 My group will work on context-aware deep learning for protein structure, interaction & design. Postdoc and PhD openings coming soon - keep an eye out!
compare, predict, design
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James Briscoe @jamesbriscoe.bsky.social · 27/08/2026
Our latest: We develop a dynamical landscape modelling framework based on time resolved single-cell data Applied to neural tube fate decisions it shows cell fate decisions as flip bifurcations, a circular topology & it predicts unseen signalling regimes @plosbiology.org doi.org/10.1371/jour...
doi.org
Dynamic Landscape Analysis of cell fate decisions provides predictive models of neural development from single-cell data
Applying dynamical systems theory to single-cell data can provide a detailed picture of the cellular states observed during cell fate decisions. This study presents a dynamic landscape analysis (DLA) ...
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Erik van Nimwegen @erikvannimwegen.bsky.social · 27/08/2026
Want to explore and understand the structure of your single-cell omics or other high-dimensional data? Try Bonsai! www.nature.com/articles/s41... Check out our tutorial videos with 1. Highlights of the Bonsai-scout exploratory analysis tool: www.youtube.com/watch?v=TE7T...
youtube.com
Bonsai-scout: Highlights
YouTube video by ISMARA: inferring gene regulatory interactions
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Noah Mitchell @npmitchell.bsky.social · 13/08/2026
Morphogenesis has a memory problem. A tissue must form reproducible shape while remaining robust to noise arising across scales. How does the target geometry survive? New work led by Nico Romeo, with @davidbruckner.bsky.social: arxiv.org/abs/2607.23907
arxiv.org
Growth and remodeling control shape memory in morphogenetic rods
Mechanical instabilities provide a general design principle for shaping developing organs and engineering soft materials. However, in slender structures, simple elastic buckling tends to erase rather ...
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David Brückner @davidbrueckner.bsky.social · 10/08/2026
If you're looking for a PhD position, or know someone looking checkout our interdisciplinary PhD Fellowship program! We are always looking for talented students with a physics or computational background to join our group to work on the physics of living systems!
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Reposted by David Brückner
Xavier Trepat @xaviertrepat.bsky.social · 06/08/2026
When tension increases, the nucleus escapes. New paper out in @natphys.nature.com. Check out Tom's thread for a summary 👇
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Kristina Stapornwongkul @kstapornwongkul.bsky.social · 06/08/2026
First published teamwork of the lab 🎉! We wrote a review about emerging concepts of how metabolism promotes, regulates and changes during gastrulation. We hope it will be useful for anyone interested in the emerging field of developmental metabolism. www.sciencedirect.com/science/arti...
sciencedirect.com
A metabolic view of gastrulation: Coordinating signalling, epigenetics and morphogenesis
Gastrulation is the morphogenetic process by which the single-layered pluripotent epiblast is reorganised into the three germ layers and the basic bod…
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Grosshans Lab @labgrosshans.bsky.social · 05/08/2026
RNA-binding proteins (RBPs) often bind numerous transcripts - but do they act through a network effect? Our new paper in @plosbiology.org shows that the highly conserved LIN28 RBP controls developmental timing in C. elegans larvae through only two targets. doi.org/10.1371/jour... 1/n
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Cornelia Schwayer @cschwayer.bsky.social · 03/08/2026
I will be opening my research group at the Max Delbrück Center later this year to unravel the principles governing the unique context sensing capacity of the liver www.mdc-berlin.de/schwayer and am looking for enthusiastic PhD applicants.
mdc-berlin.de
Schwayer Lab
The mammalian liver possesses a regenerative capacity that is unmatched by any other organ. Following injury, liver epithelial cells can proliferate or even change their identity, enabling the organ t...
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Reposted by David Brückner
Cornelia Schwayer @cschwayer.bsky.social · 03/08/2026
Looking for a PhD? Applications are now open for PhD positions at the Max Delbrück Center. 🧵 www.mdc-berlin.de/career/jobs/...
mdc-berlin.de
PhD Positions (m/f/d) in Biomedical Research
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David Brückner @davidbrueckner.bsky.social · 02/08/2026
It was fun writing a perspective about recent work from Fridtjof Brauns, Nikolas Claussen & Boris Shraiman on how tissues can flow without fluidizing: Dynamic control of interfacial tension drives convergent extension, combining instruction & self-organization www.condmatjclub.org/jccm_july_20...
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Yanlan Mao @yanlanmao.bsky.social · 30/07/2026
This epic paper, which has been a heroic 10 year journey for the lead author, Ricardo Barrientos, is finally out in Cell today! Many thanks to all co-authors, especially Billie Meadowcroft and Andela Saric for their beautiful MD simulations www.cell.com/cell/fulltex...
cell.com
Basement membrane turnover controls cell shape
Basement membranes are scaffolds of proteins, like collagen, that give organs shape. During development, basement membranes must adapt to the growing organ. We infer how fast the basement membrane ada...
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Ulrich Schwarz @ulrichschwarz.bsky.social · 28/07/2026
📢Paper alert📢 Now out in @natcomms.nature.com: malaria parasites in infected red blood cells 🦟🔴 divide asynchronously due to a limiting replication resource🧬. Another great collaboration within #SFB1129 👍 Read our open access paper here: doi.org/10.1038/s414...
doi.org
Competitive resource allocation drives asynchronous and rapid nuclear multiplication in the malaria parasite - Nature Communications
Within red blood cells, Plasmodium falciparum forms cells with multiple nuclei that replicate asynchronously despite residing in a shared cytoplasm. In this study, the authors developed a biophysical ...
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Luca Giorgetti lab @FMI @lucagiorgetti.bsky.social · 28/07/2026
Thank you @natgenet.nature.com for this nice Research Briefing www.nature.com/articles/s41... on our recent paper reporting live-cell measurements of Sox2 promoter bursting kinetics when varying its genomic distance from the SCR enhancer 👉 www.nature.com/articles/s41...
nature.com
The genomic position of an enhancer modulates bursting dynamics of the cognate promoter - Nature Genetics
We show that, in a genomic locus with minimal complexity, the distance between promoter and enhancer modulates the frequency of clustered transcriptional bursts. Thus, besides the nucleotide sequence,...
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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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Yuting Irene Li @irene-yuting-li.bsky.social · 27/07/2026
I’m starting at the Hubrecht Institute at a new group leader from September. I will be hiring a PhD student through the PhD program ⬇️ If you, or anyone you know, is interested in theoretical biophysics, I will be very excited to hear from them — please send inquiries to my ISTA email for now :)
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James Briscoe @jamesbriscoe.bsky.social · 27/07/2026
It's not often single author primary research papers are published in our field & it's even rarer when the author is a Nobel Prize winner Check out the new work by Eric Wieschaus in @dev-journal.bsky.social Flattening maternal gradients in Drosophila embryo journals.biologists.com/dev/article/...
journals.biologists.com
Maternal patterning in early Drosophila embryos: how much information can single maternal gradients supply?
Highlighted Article: Comparison of the patterning capacity of Drosophila embryos that have only one of the three maternal gradients known to control anterior posterior patterning.
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Tom Golde @tomgolde.bsky.social · 27/07/2026
New paper in @natphys.nature.com! We uncovered a stress adapation mechanism where keratin intermediate filaments in stretched epithelia undergo a supracellular bundling transition that uncages the nucleus. www.nature.com/articles/s41... @ibecbarcelona.eu, @upc.edu @qmul.bsky.social
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Mauricio Rocha @rocha-lab.bsky.social · 25/07/2026
Very happy that our workshop on developmental robustness is happening! Thank you to @biologists.bsky.social for making it possible and to all the speakers for accepting the invitation. Join us! Applications for funded positions are now open.
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epithelial mechanics fan club @epimechfc.bsky.social · 26/07/2026
How do tissues safely remove cells? Join me, @marija-matejcic.bsky.social in this perspective on the past, present and future of epithelial cell extrusion 🧵 0/16
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David Brückner @davidbrueckner.bsky.social · 25/07/2026
Our paper about predicting cell fates from combinatorial signals in 2D human gastruloids received a preprint highlight in @dev-journal.bsky.social Thank you @ancheldjs.bsky.social for a great perspective piece on our work! 👉 journals.biologists.com/dev/article/...
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Anchel de Jaime-Soguero @ancheldjs.bsky.social · 12/05/2026
Excited to be part of the first cohort of Preprint Editors at @dev-journal.bsky.social @biologists.bsky.social I will discuss selected preprints in stem cell biology, embryogenesis, signaling & genome integrity. Contact me if you come across an interesting preprint that you wish to highlight!
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David Brückner @davidbrueckner.bsky.social · 20/07/2026
Our paper on nonlocal decoding is now out in @physrevlett.aps.org! See below for a thread about the preprint 🧵 👉 journals.aps.org/prl/abstract...
journals.aps.org
Nonlocal Decoding of Positional and Correlational Information during Development
In many developmental systems, cells differentiate into a tissue by reading out morphogen concentration fields, a process fundamentally limited by noise. How much can the precision of this process be ...
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Luca Giorgetti lab @FMI @lucagiorgetti.bsky.social · 15/07/2026
Our preprint is now out in @natgenet.nature.com ! doi.org/10.1038/s415... We measured Sox2 promoter bursting dynamics with the SCR enhancer positioned at different distances within a genomic locus devoid of confounding effects in mESC: Main findings in the 🧵 below:
doi.org
Enhancer control of promoter activity and variability via frequency modulation of clustered transcriptional bursts - Nature Genetics
Tünnermann et al. use live-cell imaging to study promoter activity under the control of an enhancer inserted at different genomic distances. RNA production from the promoter occurs in clusters of tran...
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Thomas Lecuit @thomaslecuit.bsky.social · 08/07/2026
The videos of the talks from speakers at the conference @college-de-france.fr on Information processing and biological computation on June 26 are available at the link below. Or on YouTube directly. Enjoy!
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Margherita Battistara @mbattistara.bsky.social · 08/07/2026
🪲🪰 Our preprint is out! This was a team effort with @wolframponisch.bsky.social, @matthewabenton.bsky.social and Ewa Paluch. We asked whether Drosophila and Tribolium use the same cell behaviours to fold their embryos during gastrulation. 🧵👇 www.biorxiv.org/content/10.6...
biorxiv.org
Morphospace analysis reveals divergent cellular behaviours driving tissue internalisation during insect gastrulation
During gastrulation, embryonic epithelia undergo large-scale remodelling to internalise the mesoderm. Whether the cellular mechanisms underlying these tissue deformations are conserved across species ...
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Benoit Ladoux @bladoux.bsky.social · 08/07/2026
Thrilled to share our new paper on cell extrusion. A beautiful study with a tremendous amount of data, led by the fantastic @fanny-wodrascka.bsky.social ! www.biorxiv.org/content/10.6...
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Alex Schier @schierlab.bsky.social · 06/07/2026
Come join us at the @biozentrum.unibas.ch as Professor in Climate Biophysics. Blue-sky research, inspiring colleagues, and generous support.
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Ben Engel @cellarchlab.com · 03/07/2026
Super excited to launch this search for a new endowed professor at the @biozentrum.unibas.ch! Join us to build a research cluster in Climate Biophysics! 🌍🌊🌾🔬🧪 This is a unique opportunity to create a community in Basel🇨🇭working together on this timely topic! ⏳🌡️ Questions? Please reach out! 👩‍🔬👨‍🔬
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James Briscoe @jamesbriscoe.bsky.social · 01/07/2026
New in @dev-journal.bsky.social: how tissue shape tells cells what to become Using human stem-cell neuruloids, we show how that physical boundaries encode positional information that drives cell fate patterning in a model of trunk formation A thread 🧵 journals.biologists.com/dev/article/...
journals.biologists.com
Boundary constraints can determine pattern emergence
Summary: A reaction-diffusion mechanism recapitulates pattern emergence in an in vitro model of neuromesodermal progenitors under a variety of boundary and geometrical perturbations.
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Erik van Nimwegen @erikvannimwegen.bsky.social · 02/07/2026
What do single bacterial cells do when they run out of carbon source? If you missed the preprint, check out the official publication: doi.org/10.1038/s443... If the total bacterial population on earth stays roughly constant, then there must on average be as much death as replication. 1/n
doi.org
E. coli prepares for starvation by dramatically remodeling its proteome in the first hours after loss of nutrients - Molecular Systems Biology
Although in the wild bacteria likely spend most of their time deprived of nutrients and slowly starving to death, very little is known about how bacteria adapt their phenotype to starvation. Here we combine microfluidics with quantitative fluorescence microscopy of transcriptional reporters to comprehensively quantify growth and gene expression at the single-cell level in E. coli during carbon starvation. We find that all cells immediately stop growing upon loss of carbon source and that almost all remain alive for over 30 hours. Furthermore, entry into starvation triggers a dynamic expression program that is remarkably homogeneous across single cells, but highly variable across genes, causing dramatic remodeling of the proteome early in starvation. We further show that, as protein production and the rate of protein degradation both decay approximately exponentially, protein concentrations become essentially ‘frozen’ after the first 5 to 10 hours, setting phenotypes for several days of starvation. Finally, using experiments in which gene expression is inhibited for different periods, we show that protein production in the first 5 hours is crucial for protecting cells from stresses late in starvation.
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David Brückner @davidbrueckner.bsky.social · 02/07/2026
How do cells combine cell-intrinsic & tissue-level cues create stable patterns during intestinal regeneration? 🤔 Our paper w/ @cschwayer.bsky.social @silviabarbiero.bsky.social @ehannezo.bsky.social @priscaliberali.bsky.social is out! 🥳 A thread on the theory part 🧵⬇️ www.cell.com/cell/fulltex...
cell.com
Multiscale integration of tissue and chromatin context converts cell heterogeneity into stable intestinal patterning
During regeneration, tissues must translate transient cellular variability into stable spatial organization. Tissue architecture generates a density-dependent window of heterogeneity in the mechanosen...
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Michael Sieber @michaelsieber.bsky.social · 01/07/2026
Have ideas for your own, independent research program in Theoretical Biology? Then come and join us as a Group Leader at the @mpi-evolbio.bsky.social in Plön, Germany!
mpg.de
Group Leader in Theoretical Biology (m/f/d)
Experience in Theoretical Biology, Applied Mathematics, Theoretical Physics
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Silvia Barbiero @silviabarbiero.bsky.social · 01/07/2026
It’s out!! 🎉 My first PhD paper has been published in Cell 🤩 A huge thank you to amazing co-authors @cschwayer.bsky.social and @davidbrueckner.bsky.social , and to our fantastic mentors @priscaliberali.bsky.social and @ehannezo.bsky.social for their guidance and support throughout this journey!
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Cornelia Schwayer @cschwayer.bsky.social · 01/07/2026
Excited to share that our work on ‘How the gut gets patterned during regeneration’ is out now cell.com/cell/fulltext/S0092-8674(26)00696-3 Thanks a lot to @priscaliberali.bsky.social @silviabarbiero.bsky.social @davidbrueckner.bsky.social @ehannezo.bsky.social and all co-authors! 🧵
cell.com
Multiscale integration of tissue and chromatin context converts cell heterogeneity into stable intestinal patterning
During regeneration, tissues must translate transient cellular variability into stable spatial organization. Tissue architecture generates a density-dependent window of heterogeneity in the mechanosen...
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Prisca Liberali @priscaliberali.bsky.social · 30/06/2026
It is out 😍 check it out!! Multiscale integration of tissue and chromatin context converts cell heterogeneity into stable intestinal patterning. @cschwayer.bsky.social @silviabarbiero.bsky.social @davidbrueckner.bsky.social @ehannezo.bsky.social www.cell.com/cell/fulltex...
cell.com
Multiscale integration of tissue and chromatin context converts cell heterogeneity into stable intestinal patterning
During regeneration, tissues must translate transient cellular variability into stable spatial organization. Tissue architecture generates a density-dependent window of heterogeneity in the mechanosen...
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Syd Sattler @sydsat.bsky.social · 29/06/2026
What if an embryo made immune cells before it finished building the tissue they usually come from? In our new preprint, we show that annual killifish embryos specify neutrophils before germ layers are fully resolved. www.biorxiv.org/content/10.6... Huge thanks to my PI, @ohnolog.bsky.social ! 🧵
biorxiv.org
Early immune cell development precedes gastrulation in annual killifish
During embryogenesis, cell types arise in a predictable order because developmental regulators act sequentially. But how evolutionary changes in morphogenesis reshape the signaling environments that a...
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Virtual Gastrulation Zoom Talks @vgzt2021.bsky.social · 29/06/2026
Exciting VGZT session this week! 🎉 🗓️ Thursday, July 2nd ⏰ 9:30 PDT / 12:30 EDT / 17:30 BST / 18:30 CEST Our speakers are: 👉 Silvia Santos (@santoslab.bsky.social) 👉 Diana Pinheiro (@dianapinheiro.bsky.social) See you there! 👋
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Silvia Fre lab @frelab.bsky.social · 26/06/2026
Week-end reading? Check out our new review on development and regeneration of glandular epithelia! With two fantastic co-authors: @robinjournot.bsky.social and @candice-merle.bsky.social ! 🤗 authors.elsevier.com/sd/article/S...
authors.elsevier.com
Shared molecular and cellular programs during regeneration of glandular epithelia
An emerging concept across multiple adult tissues implies that regeneration involves the transient reactivation of developmental programs, rather than…
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