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Simona Chera & Cell Fate Lab

@cheralab.bsky.social
139 followers 370 following 28 posts

We are using hiPSC-derived organoids, targeted cell ablation, genetic cell tracing, gene expression tuning and multiomics to study regulators of cell specification decisions and cell plasticity. 📍 UiB Norway 👩🏻‍🎓 UniGe Switzerland chera.w.uib.no

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Reposted by Simona Chera & Cell Fate Lab
Luiza Ghila @luizaghila.bsky.social · 13/08/2026
Looking forward to chairing the "Cells and their niche cross-talk" session at the next Nordic Developmental Biology meeting in Uppsala. We will be diving into some fantastic new research. Check out the full program here: www.swedbo.se/the-5th-nord... #DevBio
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Reposted by Simona Chera & Cell Fate Lab
Anna Czarkwiani @aniaczark.bsky.social · 01/07/2026
We're very excited to announce the official launch of the Journal of Regeneration. Together with the amazing team from @pensoft.net and my two co-EICs Loriano Ballarin and Buki Rinkevich, it is such a pleasure to share this new platform for bringing together the regeneration biology community.
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Journal of Regeneration
 Journal of Regeneration is an international peer-reviewed, Open Access journal aiming to provide a platform for the dissemination of research results on regeneration and tissue repair across phy...
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Reposted by Simona Chera & Cell Fate Lab
James Briscoe @jamesbriscoe.bsky.social · 02/07/2026
Paying peer reviewers Interview with @danielgorelick.bsky.social about @biologyopen.bsky.social Fast & Fair trial in which peer reviewers were paid £220/review Spoiler: it works - fast, high quality reviews www.nature.com/articles/d41...
nature.com
Why paying peer reviewers works, according to a journal’s editor-in-chief
A biology journal that paid peer reviewers found that the approach cut the time to a first editorial decision by 85% and maintained high-quality reviews.
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Reposted by Simona Chera & Cell Fate Lab
MwahahahahahadScientist @mads100tist.bsky.social · 02/07/2026
Still two weeks left to apply for the special "From Postdoc to PI" symposium at the Heidelberg meeting in September! If you're a postdoc and are in the job market, take this opportunity to tell everyone who you are 🐟🧪 There will be a prize an all!
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Simona Chera & Cell Fate Lab @cheralab.bsky.social · 02/07/2026
Life in a research lab when PIs are stuck in meetings. #lablife
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Simona Chera & Cell Fate Lab @cheralab.bsky.social · 02/07/2026
We are very happy and grateful to the Diabetes Wellness Norge (DWN) Foundation for supporting our research! www.diabeteswellness.no
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Simona Chera & Cell Fate Lab @cheralab.bsky.social · 29/06/2026
Huge congratulations to Agnes Oline Sandvik for successfully defending her Master’s thesis! 🎓✨ Completing a complex research project and crushing the defense is a massive achievement. The whole lab is proud of you, and wishing you all the best! 🚀🔬 #MastersThesis #Graduation
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Luiza Ghila @luizaghila.bsky.social · 05/06/2026
Excellent work 👏 by @unger-lucas.bsky.social explaining his work in under 2 minutes movie:
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Reposted by Simona Chera & Cell Fate Lab
Hao Yin @haoyin.bsky.social · 05/06/2026
MouseMapper An imaging-omics workflow of whole-mouse analysis Up to single-cell resolution!👹 vDISCO WildDISCO whole-mouse optical clearing #SpatialProteomics Trigeminal ganglia VR annotation of major organs, peripheral nerve & Mφ @erturklab.bsky.social Nature 2026 www.nature.com/articles/s41...
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Genes & Development @genesdev.bsky.social · 04/06/2026
📽️ G&D Tapes 📽️ G&D Author, Lucas Unger, tells us about an auto-regulatory loop between HNF1A and Hedgehog signaling that dictates stem cell lineage specification. New in #genesdev: ➡️ genesdev.cshlp.org/content/40/11-12… Simona Chera & Cell Fate Lab‬ Lucas Unger Luiza Ghila
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Pål Rasmus Njølstad @njolstad.bsky.social · 21/05/2026
We are hiring! Researcher position at Mohn Center for Diabetes Precision Medicine, Univ of Bergen. Focus: functional studies of transcription factors in monogenic diabetes. 3-year position. More information and how to apply: www.finn.no/job/ad/44030886 Please share with relevant candidates.
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Reposted by Simona Chera & Cell Fate Lab
Denis Duboule @denisduboule.bsky.social · 09/05/2026
www.lemonde.fr/disparitions...
lemonde.fr
Pierre Chambon, pionnier de la biologie moléculaire, est mort
L’ancien professeur au Collège de France, qui avait accumulé les brillantes distinctions et plus de 900 publications, a également été un « bâtisseur d’institution ». Il s’est éteint jeudi 7 mai à l’âg...
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Simona Chera & Cell Fate Lab @cheralab.bsky.social · 22/05/2026
Many thanks 🙏 to Julie Warin and @anne-grapin.bsky.social for a very nice outlook on our paper in @genesdev.bsky.social genesdev.cshlp.org/content/earl...
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Reposted by Simona Chera & Cell Fate Lab
Genes & Development @genesdev.bsky.social · 20/05/2026
🆕 ADVANCE ONLINE 🆕 RESEARCH PAPER: Defective HNF1A hinders GLI3 processing favoring duodenal versus pancreatic fate, thus leading to intestinal elongation in vivo By Unger et al. Luiza Ghila, and Simona Chera ➡️ ow.ly/8oTf50YVMEt Simona Chera & Cell Fate Lab‬ Lucas Unger Luiza Ghila
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Reposted by Simona Chera & Cell Fate Lab
Fiona Tribe @fionatribe.bsky.social · 23/04/2026
Yes, Swiss scientist Fritz Zwicky coined the term “dark matter” which is impressive, but he also coined the term “spherical bastard” to describe people who are bastards no matter which way you look at them, and I think that should be celebrated more.
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Reposted by Simona Chera & Cell Fate Lab
Luiza Ghila @luizaghila.bsky.social · 06/05/2026
@njolstad.bsky.social kicking off the 10th Meeting of the Study Group on Genetics of Diabetes #SGGD2026 at Solstrand
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Reposted by Simona Chera & Cell Fate Lab
Luiza Ghila @luizaghila.bsky.social · 20/05/2026
Our dean, Marit Bakke is introducing Professor Anna Gloyn's lecture @annagloyn.bsky.social Professor Anna Louise Gloyn will be appointed honorary doctor @unibergen.bsky.social on May 21, 2026.
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Reposted by Simona Chera & Cell Fate Lab
Wallpaper* @wallpapermag.bsky.social · 21/05/2026
In Venice, ‘The Shape of Time’ sees Barry X Ball unveil 23 sculptures on The Basilica of San Giorgio Maggiore www.wallpaper.com/art/exhibiti...
wallpaper.com
Barry X Ball’s sculptures inhabit a monastic island in Venice
In Venice, ‘The Shape of Time’ sees the artist unveil 23 sculptures on the Basilica of San Giorgio Maggiore
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Reposted by Simona Chera & Cell Fate Lab
Luiza Ghila @luizaghila.bsky.social · 07/05/2026
Really great session on understanding the mechanisms of #diabetes at the 10th Meeting of the Study Group on Genetics of Diabetes #SGGD2026 with Anna Gloyn Anne Grapin Botton @anne-grapin.bsky.social and Simona Chera @cheralab.bsky.social
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Reposted by Simona Chera & Cell Fate Lab
Itai Yanai @itaiyanai.bsky.social · 13/04/2026
Data is not transparent! And that's why looking without bias is hard to do. We asked undergrads what correlation they expected between wealth & happiness, before showing them a fictitious dataset. Faced with an identical graph, those expecting a positive correlation were much more likely to see one!
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Reposted by Simona Chera & Cell Fate Lab
MwahahahahahadScientist @mads100tist.bsky.social · 08/04/2026
9pm Switzerland time, y'all! I'll be talking about how neurons are like onions. Tiny onions. Sort of. Look, you'll have to be there 🧪🧅🐟
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Reposted by Simona Chera & Cell Fate Lab
Lucas Unger @unger-lucas.bsky.social · 30/03/2026
Excited to share our new paper online ahead of print in Genes & Development @genesdev.bsky.social. We show how HNF1A affects GLI3 processing and drives #pancreatic and #intestinal development. It’s been amazing to see it come together thanks to the team @cheralab.bsky.social. Read it here:
genesdev.cshlp.org
Defective HNF1A hinders GLI3 processing favoring duodenal versus pancreatic fate, thus leading to intestinal elongation in vivo
A biweekly scientific journal publishing high-quality research in molecular biology and genetics, cancer biology, biochemistry, and related fields
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Simona Chera & Cell Fate Lab @cheralab.bsky.social · 27/03/2026
📣 paper alert We are happy to share our latest work on how HNF1A's involvement in GLI3 processing affects #pancreatic & intestinal #development 5 years of work is 🆕 ONLINE ahead of print 🆕 in @genesdev.bsky.social I must say I'm really proud of my team! 👏 genesdev.cshlp.org/content/earl...
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Reposted by Simona Chera & Cell Fate Lab
James Briscoe @jamesbriscoe.bsky.social · 09/03/2026
New Perspective form Rory Maizels & me: "Gene regulatory networks: from correlative models to causal explanations" Gene regulatory networks are supposed to give us mechanistic explanations of development, so why are we drowning in 'hairballs' of statistical correlations? rdcu.be/e7zx7
rdcu.be
Gene regulatory networks: from correlative models to causal explanations
Nature Reviews Genetics - In this Perspective, Maizels and Briscoe discuss the limitations of current models of gene regulatory networks and outline solutions to harness data abundance without...
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Society for Developmental Biology @socdevbio.bsky.social · 09/03/2026
✨Crepidula fornicata (slipper snail) 🐚 A classic model for spiral cleavage! 🧬 Crepidula embryos reveal how early cell divisions shape body plans and establish left-right asymmetry in spiralian animals 📸 Image by Jake Leyhr #ModelMonday
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Simona Chera & Cell Fate Lab @cheralab.bsky.social · 02/03/2026
Last day to send an abstract for the: 10th Meeting of the Study Group on Genetics of #Diabetes #SGGD which will take place at the Solstrand Hotel in the magnificent landscape by the Bjørnafjord, just 30 km from the center of in Bergen, Norway.
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Simona Chera & Cell Fate Lab @cheralab.bsky.social · 27/02/2026
#FluorescenceFriday #devbio pic credit: Ulrik Larsen
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Simona Chera & Cell Fate Lab @cheralab.bsky.social · 26/02/2026
I'm with you on this! 💯 ⬇️
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Simona Chera & Cell Fate Lab @cheralab.bsky.social · 25/02/2026
Congratulations 🎉 to @unger-lucas.bsky.social on successfully defending his PhD with the thesis “Dissecting HNF1A’s Role in Early Cell Fate Decisions and Their Impact on Pancreatic Islet”! 👏 🎓 #cellfate #devbio
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Luiza Ghila @luizaghila.bsky.social · 24/02/2026
Professor Emerita Birgitta Åsjø @unibergen.bsky.social is introducing Lucas @unger-lucas.bsky.social as he starts his PhD work presentation focused on the Dissecting HNF1A’s Role in Early #CellFate Decisions & their Impact on Pancreatic #Islet @cheralab.bsky.social #PhDLife #PhDdefense #devbio
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Anne Grapin-Botton @anne-grapin.bsky.social · 01/02/2026
The Elbe Program is offering positions for independent postdocs at the interface between theory (physics, maths, computing) and biology. Join us in Dresden! Deadline 13 March.
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Simona Chera & Cell Fate Lab @cheralab.bsky.social · 18/02/2026
@unger-lucas.bsky.social will defend his PhD work 🎓@unibergen.bsky.social 🕒Tuesday, 24th of February at 12.15 📍Auditorium 2, BB-bygget, Jonas Lies vei 91 Trial Lecture at 10.15 “Transcriptional regulation in the developing pancreas: From genome architecture to phenotypes” #UiB 🇳🇴 #devbio #PhDLife
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Bjerknes Center for Climate Research (BCCR) @bjerknes.uib.no · 17/02/2026
🧪 Come work with us in Bergen! 🌊 Do you have a good understanding of paleoceanography & a masters degree in Geosciences, Marine Biology or similar - this might be your chance to become a researcher 💥 @i2b-erc.bsky.social @polhavet2050.bsky.social Read more and apply here: lnkd.in/e8KBAyPi
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European Association for the Study of Diabetes @easdnews.bsky.social · 10/02/2026
⌛ Few days left to #nominate a colleague who’s made an outstanding contribution to #diabetes #research & #care. Each year, EASD honours pioneers & leaders with 6 prestigious #prizes. 📅 Deadline: 15 Feb 2026 | 🕛 12:00 CET Spread the word & nominate now 👉 www.easd.org/prizes/
Promotional graphic announcing “Nominations for EASD Prizes 2026.” The left side features a dark blue background with the headline “Honouring excellence in diabetes research!” and text inviting nominations to recognise outstanding colleagues. The right side shows abstract blue light rays and curved white and light-blue graphic rings. The EASD logo appears at the bottom left, with the website link “easd.org/prizes” at the bottom right.
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American Society for Cell Biology @ascbiology.bsky.social · 10/02/2026
Webinar alert Learn how to generate 3D human multi-cell type neurospheres from iPSCs without necrotic core formation. Featuring Stefan Wendt, PhD (UBC) Date: March 25 | Time: 12:00 pm ET Free for all Register here: www.ascb.org/ascb-meetings/3d-human…
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Nature Biotechnology @natbiotech.nature.com · 10/02/2026
John Gurdon taught us that the beginning of life is never truly lost — only waiting to be reawakened. Long before his ideas were accepted, he showed that a cell remembers more than it appears to know: that within a differentiated nucleus lies the latent capacity to begin anew go.nature.com/3Mf8SD0
go.nature.com
John Gurdon 1933–2025 - Nature Biotechnology
Nature Biotechnology - John Gurdon 1933–2025
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Simona Chera & Cell Fate Lab @cheralab.bsky.social · 09/02/2026
Rather proud that our mouse got its own official name 🐀 thanks @mousegenome.bsky.social www.informatics.jax.org/allele/MGI:8...
informatics.jax.org
Hnf1a<tm1.1Schra> Targeted Allele Detail MGI Mouse (MGI:8280631)
View Hnf1a<tm1.1Schra> allele: origin, molecular description, gene associations, and references.
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Simona Chera & Cell Fate Lab @cheralab.bsky.social · 06/02/2026
Meet Skatt, my trusted grant advisor. He has strong opinions. Mostly about who's the Chair Master. #JellyBellyFriday
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Sigrid Jusélius Foundation @sigridjuselius.bsky.social · 13/05/2025
Professor Ville Hietakangas calls for patience from research funders: the time frame in basic research is long, and financial concerns undermine creativity. Read more in our article: sigridjuselius.fi/en/news/scie...
sigridjuselius.fi
Scientific leaps cannot be taken overnight - Sigrid Jusélius Foundation
There are no quick wins in top medical research. Ville Hietakangas, who studies the effect of food on our physiology, asks for patience and trust from those who fund science.
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Carol Yang @yhcarolyang.bsky.social · 04/02/2026
We are recruiting a postdoc to join a Wellcome Trust-funded project at LSI-Exeter, investigating the role of neural-pancreas dynamics in maintaining glucose homeostasis. 🐟🔬🧠 @lsiexeter.bsky.social #zebrafish #islet #postdocjobs jobs.exeter.ac.uk/hrpr_webrecr... Please repost 🙏
jobs.exeter.ac.uk
Powered by MHR
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Daniel Drucker @danieljdrucker.bsky.social · 04/02/2026
Studies in cells and mice reveal that the human GLP1R A316T variant exhibits characteristics of constitutive activation but dampened GLP-1RA responses www.science.org/doi/10.1126/...
science.org
In vivo functional profiling and structural characterization of the human GLP1R A316T variant
The GLP1R A316T missense variant displays improved glucose tolerance but impaired pharmacological incretin responses in vivo.
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Michalis Averof @michalis-averof.bsky.social · 04/02/2026
Just discovered the wonderful covers of 'Genes to Cells', the journal of the Molecular Biology Society of Japan @mbsj-official.bsky.social – absolutely beautiful! here some examples inspired by mitosis, CRISPR, the DNA helix, and plant pigments
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European Association for the Study of Diabetes @easdnews.bsky.social · 03/02/2026
🎯 Started preparing your #abstract submission for the 62nd EASD Annual Meeting? This is your sign to get started & share your #diabetes #research with the global community in Milan 🇮🇹 from 28 Sept - 02 Oct 2026. 🗓️ Deadline: 1 Apr 2026 | 🕛 18:00 CEST Submit via MyEASD 👉 www.easd.org/annual-meeti...
Promotional graphic announcing that scientific submissions for EASD 2026 are open. Text highlights the dates “28 September-02 October” and the location “Milan, Italy.” A message invites researchers to submit abstracts to share their work with the global diabetes community. The design features red and white brush-stroke panels and a stylised skyline of Milan on the right, with “EASD 2026 Milan” and “easd.org” at the bottom.
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European Association for the Study of Diabetes @easdnews.bsky.social · 05/02/2026
📢🚨 Don’t miss this: Apply for the #EASD Rising Star Symposium and #EFSD Rising Star Fellowship Programme! Eligibility: EASD members, within 7 years of PhD/MSc/MD ⏰ Deadline: 17 Feb 2026 | 12:00 CET 👉 Apply: www.europeandiabetesfoundation.org/programmes/p... Supported by Novo Nordisk #diabetes
Call for Applications graphic for the EFSD Rising Star Fellowship Programme and EASD Rising Star Symposium. Text encourages young researchers in Europe to develop innovative diabetes research. Supported by Novo Nordisk through a donation. Includes EFSD logo, website europeandiabetesfoundation.org, abstract blue and green shapes, and an image of a researcher using a microscope.
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Communications Biology @commsbio.nature.com · 06/08/2025
Would you like to participate in the peer review process at Communications Biology? Please fill out this form to express your interest to act as a reviewer📝 We particularly encourage early-career researchers and applicants from underrepresented groups in research. forms.office.com/e/fv22f9aRt5
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Cells & Development @cellsdev.bsky.social · 31/01/2026
A fascinating review on the role of Activin in organ induction. Isn't it wild that in Xenopus embryos, a piece of the animal cap can be induced with Activin at different concentrations and buffers to form the ❤️, kidney, the pancreas, head, tail, and even a whole embryoid 🤯: doi.org/10.1016/j.cd...
Fig. 1. Animal cap assay and sandwich method as in vitro induction systems.
In amphibians, a blastocoel cavity clearly forms inside the animal hemisphere during the blastula and early gastrula stages. The cap-like portion lining the roof of the blastocoel cavity is the animal cap. This region consists of a sheet of pluripotent cells, organized into one or several layers. In the animal cap assay, the animal cap was treated with a physiological saline solution containing inducing factors and then cultured. Depending on the type, concentration, and duration of exposure to the inducing factors, animal caps can differentiate into various cell types. In contrast, the sandwich method, involves culturing the inducer source in between two animal caps. In this technique, the sources of induction can include the dorsal lip of the blastopore (organizer), adult tissues, pelletized soluble factors, or animal caps pretreated with soluble factors. In this figure, activin is used as an example of an inducing factor.Fig. 12. Summary of the in vitro induction system using activin as an inducing factor.
This in vitro induction system utilizes activin and retinoic acid as inducing factors to treat animal caps, employing techniques such as animal cap assay, dissociation/reaggregation protocol, and the sandwich method. By applying these methods, various levels of self-organization can be replicated and controlled in vitro, ranging from lower-order cell differentiation to higher-order tissue differentiation, organogenesis, and even the formation of fundamental body plans. Abbreviations: Dorsal [D], ventral [V], and retinoic acid [RA].Fig. 11. Formation of embryoids by artificial activin concentration gradients.
To create embryoids, animal caps were prepared through treatment with low (0.5–1 ng/ml), intermediate (5–10 ng/ml), or high (50–100 ng/ml) concentrations of activin. These three types of activin-treated animal caps were then sequentially arranged and cultured with untreated animal caps. After 3 days of culture, embryoids with distinct head and trunk-tail structures were formed (A). Histological sections revealed differentiation into head tissues, such as the cement gland [cg] and eyes, and trunk-tail tissues including the ear vesicle [ev], brain [br], notochord [not], muscle [mus], and gut (B). When newt embryos are used in similar combination cultures, neural plate structures forming the brain [white arrow] and axial structures forming the trunk-tail regions [black arrow] are sometimes observed (C).Fig. 7. In vitro heart formation and in vivo transplantation experiment.
When treated with a high concentration of activin, the animal caps of Xenopus embryos did not differentiate into heart tissue. However, if the animal cap dissociates into individual cells before activin treatment and then reaggregates, it forms a beating heart [arrow] with 100 % efficiency (A). This heart expresses differentiation marker genes, such as Nkx2.5, GATA-4, Tbx5, MHCα, TnIc (cardiac troponin I), and ANF, none of which are expressed in an animal cap treated with activin alone, without dissociation/reaggregation (B). Electron microscopy reveals the presence of intercalated discs [id] specific to the cardiac muscle, along with visible mitochondria [m] and Z-bands [z] (C). When the reaggregated heart tissue is orthotopically transplanted into the cardiac primordium of a neurula-stage embryo, it integrates without rejection and continues to beat (D), although it does not persist through host metamorphosis. In contrast, when the reaggregated tissue is ectopically transplanted into the ventral region of the neurula, it begins to beat synchronously with the host heart and gradually reddens as it initiates blood circulation (E).
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Genes & Development @genesdev.bsky.social · 21/01/2026
Explore emerging research with field leaders Keystone Symposia #IsletBiology & #Diabetes : #BetaCell Compensation, Failure & Recovery, this March in Breckenridge! #KSDiabetes26 For more info: ➡️ hubs.la/Q03X7Ckz0
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Simona Chera & Cell Fate Lab @cheralab.bsky.social · 23/01/2026
That 5th sample... #lama #portal #aperturesciencesentryturret #thinkingwithportals
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Simona Chera & Cell Fate Lab @cheralab.bsky.social · 20/01/2026
#Norway at its best. From my backyard #northernlights #aurora
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Benoit Bruneau @benoitbruneau.bsky.social · 18/01/2026
Piece on why Nature became so influential and “important”. This quote: “history shows that much of its success has been circumstantial and opportunistic rather than meritorious…we should not mistake the system that emerged for one that reliably surfaces the best work.” www.asimov.press/p/nature
asimov.press
How Nature Became a 'Prestige' Journal
Since launching in 1869, Nature has evolved from a periodical offering commentary on pigeons to the prestige journal in science. But how did Nature build its reputation, and can it last?
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