Adrian Ranga (@adrianranga1) 's Twitter Profile
Adrian Ranga

@adrianranga1

Bioengineer using organoids to understand patterning and morphogenesis @KU_Leuven

ID: 2373556902

linkhttps://www.mech.kuleuven.be/en/research/lbm calendar_today05-03-2014 10:51:56

216 Tweet

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684 Takip Edilen

Diana Pinheiro (@diana__pinheiro) 's Twitter Profile Photo

2❤️human devbio projects later😉, Jennifer Mitchel and I are excited to share our review on the biological mechanisms regulating the mechanical properties of tissues in cancer and morphogenesis. Thanks for the great discussions 🤓🙂🤩 #collectivemigration doi.org/10.1016/j.ceb.…

epithelial mechanics fan club (@epimechfc) 's Twitter Profile Photo

What’s the link between Origami and morphogenesis? This is the world of Actuation, I’m Abdel Rahman Abdel Fattah, and I’ll share with you insights, experiments and an outlook on how epithelia use mechanical forces to gain geometrical and functional complexity.

What’s the link between Origami and morphogenesis?

This is the world of Actuation, I’m <a href="/AR_AbdelFattah/">Abdel Rahman Abdel Fattah</a>, and I’ll share with you insights, experiments and an outlook on how epithelia use mechanical forces to gain geometrical and functional complexity.
Orly Reiner (@orly_reiner) 's Twitter Profile Photo

Exciting breakthrough: A new microfluid-based human pluripotent stem cell model now allows researchers to accurately model both the rostral-caudal and the dorsal-ventral features of early human central nervous system development. rdcu.be/dzF73

Exciting breakthrough: A new microfluid-based human pluripotent stem cell model now allows researchers to accurately model both the rostral-caudal and the dorsal-ventral features of early human central nervous system development. rdcu.be/dzF73
Pierre Haas (@lepuslapis) 's Twitter Profile Photo

New #review on "Shaping Epithelial Lumina under Pressure" now published #BiochemSocTrans Portland Press! Matt Bovyn and I review lumen formation mechanics and discuss the emerging role of nonlinear mechanics in the elongation of tubular lumina. doi.org/10.1042/BST202…

New #review on "Shaping Epithelial Lumina under Pressure" now published #BiochemSocTrans <a href="/PPPublishing/">Portland Press</a>! <a href="/mattbovyn/">Matt Bovyn</a> and I review lumen formation mechanics and discuss the emerging role of nonlinear mechanics in the elongation of tubular lumina.
doi.org/10.1042/BST202…
katja heuer🐘k4tj4@mstdn.social🦋k4tj4.bsky.social (@katjaqheuer) 's Twitter Profile Photo

Paper is now out in eLife - the journal 🐵🦓🧠🐈🦔🐕🦇🦭🦥 cerebellar folding amazingness! elifesciences.org/articles/85907 together with a summary article of our work elifesciences.org/articles/93122 & a press release elifesciences.org/for-the-press/… with Roberto Toro [email protected] r3rt0.bsky.social Nicolas Traut Dr. Alexandra A. de Sousa Sofie Valk Institut Pasteur, since 1887

MicroTAS (@microtas2025) 's Twitter Profile Photo

Organ-on-a-chip is one of the Hot Topics at microTAS with keynote speakers Dongeun (Dan) Huh (Penn) and Roger D. Kamm (Roger D Kamm Massachusetts Institute of Technology (MIT)), and session chairs Milica Radisic (Milica Radisic University of Toronto) and Adrian Ranga (Adrian Ranga KU Leuven). Abstract Deadline: May 14th.

Organ-on-a-chip is one of the Hot Topics at microTAS with keynote speakers Dongeun (Dan) Huh (<a href="/Penn/">Penn</a>) and Roger D. Kamm (<a href="/RogerDKamm1/">Roger D Kamm</a> <a href="/MIT/">Massachusetts Institute of Technology (MIT)</a>), and session chairs Milica Radisic (<a href="/milicaruoft/">Milica Radisic</a> <a href="/UofT/">University of Toronto</a>) and Adrian Ranga (<a href="/AdrianRanga1/">Adrian Ranga</a> <a href="/KU_Leuven/">KU Leuven</a>).

Abstract Deadline: May 14th.
Claire Dessalles (@clairedessalles) 's Twitter Profile Photo

📢New preprint alert for vascular biologists, bioengineers and living matter physicists! " Interplay of actin nematodynamics and anisotropic tension controls endothelial mechanics. " Or the story of what happens to a living tissue when you pull on it ? 💪

📢New preprint alert for vascular biologists, bioengineers and living matter physicists!

" Interplay of actin nematodynamics and anisotropic tension controls endothelial mechanics. "

Or the story of what happens to a living tissue when you pull on it ? 💪
Ina Sonnen (@sonnenkatharina) 's Twitter Profile Photo

Hes genes are dynamically expressed in many tissues. But how do dynamics differ between tissues and are they always oscillatory? We have addressed this question in the context of the developing embryo, where somites and neural tube form side-by-side. biorxiv.org/content/10.110…

Arianna Baggiolini (@baggiolinia) 's Twitter Profile Photo

📢📢📢How can we obtain a robust outer radial glia (oRG) population in 🧠organoids from guided differentiation? Exogenous LIF does the trick. Our new paper shows that cortical pericytes are among the cell types secreting LIF. Adding pericytes to cortical organoids recapitulates

📢📢📢How can we obtain a robust outer radial glia (oRG) population in 🧠organoids from guided differentiation? Exogenous LIF does the trick. 
Our new paper shows that cortical pericytes are among the cell types secreting LIF. Adding pericytes to cortical organoids recapitulates
RBSCDB (@bscdb1) 's Twitter Profile Photo

Time is now to showcase your organoid work! Five days left to submit your abstract to our Spring Meeting “Focus on organoids”, taking place in Leuven in de Hoorn on June 7th. Register on bscdb.be/spring-meeting -organised by Laurent Nguyen @EveSeuntjens Adrian Ranga Pierreux Christophe

Eirini Maniou (@emaniou) 's Twitter Profile Photo

Now out! I'm beyond thrilled to share our method for dynamically measuring neurulation forces. We hope that our addition to the toolkit will push forward the quantification of living tissue mechanics. Elvassore Lab Gabe Galea Università di Padova Developmental Biology & Cancer Marie Skłodowska-Curie Actions nature.com/articles/s4156…

Ina Sonnen (@sonnenkatharina) 's Twitter Profile Photo

Ever wondered how stem cells ensure a balance between cell fates in the gut?⚖️Turns out, they’ve got rhythm!🎶Our latest research reveals that NOTCH-driven oscillations regulate stem/progenitor cell abundance and specify secretory subtypes. Check it out: biorxiv.org/content/10.110…

jGros Lab (@jgrosl) 's Twitter Profile Photo

In this article, we show that ‘embryonic regulation’, the ability of embryos to adapt to perturbation (and to cope to inherent variability), is driven by self-organized tissue mechanics, upstream of Gdf1, whose expression is sufficient to trigger embryo formation in avians.

In this article, we show that ‘embryonic regulation’, the ability of embryos to adapt to perturbation (and to cope to inherent variability), is driven by self-organized tissue mechanics, upstream of Gdf1, whose expression is sufficient to trigger embryo formation in avians.
Apeksha Shapeti (@apek_shapeti) 's Twitter Profile Photo

Happy to proudly share that my first first-author work is finally published Nature Communications nature.com/articles/s4146…. A lot of sweat and tears went into this and I hope our findings on the role of cell forces in recruitment of cells in the context of CCMs make for an enjoyable read.