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Laura Rustarazo-Calvo

@laura-rustarazo.bsky.social
229 followers 279 following 27 posts

Bridging postdoc in the Petridou lab @EMBL 🐟🔬 Opinions are my own. | she/her

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Laura Rustarazo-Calvo @laura-rustarazo.bsky.social · 25/06/2026
Happy to share that I successfully defended my PhD thesis! 🎉 My time at @embl.org has been full of learning, exciting science, and amazing people - I feel so fortunate for this experience. Thank you to @nicolettapetridou.bsky.social for her caring mentorship and for building such a wonderful lab. 💐
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Lena Schindler @lena-schindler.bsky.social · 23/06/2026
I am thrilled to share my PhD work with @nicolettapetridou.bsky.social @embl.org: www.biorxiv.org/cgi/content/... A fun collaboration with Bernat Corominas-Murtra, Adrián Aguirre-Tamaral, @bart-smeets.bsky.social , Jef Vanghel and Tom Belpaire! Read the story in the comments below ⤵️
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Nicoletta Petridou @nicolettapetridou.bsky.social · 23/06/2026
Double preprint! 👇 Check out our latest studies on timing, heterogeneity and collective behaviour (with a fun tiny bonus on evolution!) 1. www.biorxiv.org/content/10.6... 2. arxiv.org/abs/2605.13234
biorxiv.org
Cellular timing heterogeneity regulates phase transitions in living matter
Rigidity transitions govern tissue organization in ways reminiscent of inert materials. Yet, living tissues are composed of active units with autonomous timing mechanisms, raising the question whether...
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Laura Rustarazo-Calvo @laura-rustarazo.bsky.social · 16/06/2026
Our beautiful mosaic embryo made it to the cover! 🔥
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Laura Rustarazo-Calvo @laura-rustarazo.bsky.social · 02/06/2026
...and here is @embl.org's press release on the two latest papers by @nicolettapetridou.bsky.social's group on how rigidity phase transitions guide 1️⃣ tissue organisation and 2️⃣ morphogen gradients in embryonic tissues. 🐟
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Laura Rustarazo-Calvo @laura-rustarazo.bsky.social · 02/06/2026
⚡ Our paper is now out in @natphys.nature.com ! This version now includes a detailed molecular characterisation of the optogenetic perturbations, new insights on the relevance of tricellular junctions for tissue morphology, and beautiful light-sheet timelapses. 🔬 www.nature.com/articles/s41...
nature.com
Adhesion-driven rigidity transition decoupled from density-driven jamming triggers epithelial organization in embryonic tissues - Nature Physics
Tissue phase transitions are key to morphogenesis. Now adhesion-driven rigidification is identified as key to epithelial organization but only if uncoupled from density-driven jamming.
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Camilla Autorino @cami-autorino.bsky.social · 18/05/2026
💫 Our paper is now published at @natcellbio.nature.com! So excited about this work done during my PhD at @embl.org in the group of @nicolettapetridou.bsky.social along with our great collaborators! 🐟🎉
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Nicoletta Petridou @nicolettapetridou.bsky.social · 15/05/2026
Glad to see this out in its final form! www.nature.com/articles/s41... What changed since the preprint? Wonderful experiments disentangling the effect of receptor binding vs tissue porosity on Nodal diffusion, plus one of the smoothest review experiences! Thanks @natcellbio.nature.com & reviewers 🙏
nature.com
Tissue rigidity phase transition shapes morphogen gradients - Nature Cell Biology
Autorino et al. report a feedback loop between Nodal signalling and tissue phase transitions in zebrafish embryos. Nodal alters adhesion, triggering tissue rigidification and reduced porosity, which l...
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EMBL @embl.org · 04/05/2026
EMBL graduated its biggest class ever at the end of April, celebrating with 60 fellows who submitted or defended their theses over the past 12 months. Representing 22 different countries, EMBL graduates continued to show a diversity in science as well as background. Congratulations graduates!
group photo of scientists
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Development @dev-journal.bsky.social · 20/02/2026
Tissue phase transitions in development: more than just mechanics In this Review, @nicolettapetridou.bsky.social, @laura-rustarazo.bsky.social and @karengrace12.bsky.social discuss tissue phase transitions during development: doi.org/10.1242/dev....
•	Figure 1 of the article: Fig. 1. Phase diagram of tissue material phase transitions and examples. (A) Schematic diagram showing how continuous changes in microscopic dynamics (control parameter) lead to abrupt, drastic, and non-linear shifts in macroscopic properties that define the material response (order parameter). (Aa-Ab) Exemplary phase transitions as traditionally described in non-living matter, e.g. for water (Aa), as well as in living matter, e.g. for embryonic tissues (Ab). Yellow areas indicate fluid-like tissues and regimes. Blue areas indicate solid-like tissues and regimes. Magenta dashed line depicts the critical point. Orange line marks particle and cell trajectories.
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Laura Rustarazo-Calvo @laura-rustarazo.bsky.social · 19/02/2026
Excited to share our new review in @dev-journal.bsky.social on tissue phase transitions during development! @karengrace12.bsky.social @nicolettapetridou.bsky.social 🔗 doi.org/10.1242/dev....
doi.org
Tissue phase transitions in development: more than just mechanics
Summary: Tissue material phase transitions are classically thought to regulate tissue deformability. This Review emphasises their unexpected roles in directly influencing growth and patterning signall...
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EMBL Events @events.embl.org · 19/11/2025
Abstract deadline extension alert! 🚨 You now have until 25 November to submit your abstract and be one of 22 selected short talk speakers for #EESCollectivity ➡️ s.embl.org/ees26-01-bl Explore how collective behaviours arise from fundamental principles across biological systems. 🦠🐒🧬
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Laura Rustarazo-Calvo @laura-rustarazo.bsky.social · 20/01/2026
An unexpected topic I encountered during my PhD: tricellular junctions. I first knew them as local regulators of tissue mechanics, but over time have realised their broader impact at the tissue scale. I wrote a brief overview of this in a thread for @epimechfc.bsky.social.
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Adrienne Roeder Lab @roederlab.bsky.social · 13/01/2026
Feb 1 deadline approaching for our @kitp-ucsb.bsky.social QBio summer course on Physical Principles of Morphogenesis in Plants and Animals. @streichan.bsky.social @maurazimmermann.bsky.social @maizel-lab.org @yusuke-mori.bsky.social @akankshi.bsky.social @nicolettapetridou.bsky.social
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EMBL DB unit @embldbunit.bsky.social · 19/12/2025
What a year it's been at the DB unit @embl.org! 2025 brought us hard work, exciting discoveries, and numerous initiatives that advanced our science. As we wrap up this year, we want to wish everyone a restful and joyful winter break. We'll be back in 2026, ready for new challenges. See you then! 🎉
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EMBL Events @events.embl.org · 11/11/2025
You only have one more week to submit your abstract for 'Collectivity in living systems: emergence, function, and evolution' 👉 s.embl.org/ees26-01-bl Don't miss #EESCollectivity which will explore how collective behaviours arise from fundamental principles across biological systems🦠🐒🧬
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Laura Rustarazo-Calvo @laura-rustarazo.bsky.social · 11/06/2025
⚡ Check out the lab's latest preprint - beautiful work by @cami-autorino.bsky.social ⚡
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Laura Rustarazo-Calvo @laura-rustarazo.bsky.social · 19/05/2025
Join this week's VGZT seminar to explore evo-devo in eels and how rigidity transitions shape embryonic tissue organization! 🐟
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Laura Rustarazo-Calvo @laura-rustarazo.bsky.social · 27/03/2025
🎉 Excited to share our new work: “Adhesion-driven tissue rigidification triggers epithelial cell polarity”, now on @biorxivpreprint.bsky.social ! A huge thank you to @nicolettapetridou.bsky.social, Bernat, @crisp-c.bsky.social, Adrián, and everyone involved! 🙌 🧵⤵️
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