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Pierre Mattar

@pierre-mattar.bsky.social
126 followers 111 following 109 posts
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Reposted by Pierre Mattar
Kristen Kwan @blockintheback.bsky.social · 21/08/2026
📣 The Department of Ophthalmology and Visual Sciences @utah.edu is recruiting! We seek researchers addressing exciting questions in vision science using innovative approaches. Join our community @moraneyecenter.bsky.social! Repost and contact me with questions! utah.peopleadmin.com/postings/206...
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Baptiste Lacoste @blacoste.bsky.social · 04/07/2026
🚨 We are recruiting at the Ottawa Hospital Research Institute, in the Regenerative Medicine Program ! If your are passionate about basic science, and dream to develop your own research program, please apply! #Ottawa #Canada #Recruitment #Scientist #Research Full description at the link below:
uottawa.wd3.myworkdayjobs.com
Tier 2 Canada Research Chair in Vascular Links to Neurodevelopment
Follow us on LinkedIn Posting Reason: New Position Job Type: Contingent Worker Anticipated Duration in Months (for contracts and temporary assignments): Job Family: Academic Leadership and Faculty # o...
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Anna La Torre @latorrelab.bsky.social · 13/05/2026
Excited to share our new paper! This work explores how Sonic hedgehog signaling helps coordinate retinal patterning and neurogenesis, including regulation of both cell cycle exit and progenitor competence during mammalian eye development journals.biologists.com/dev/article/...
journals.biologists.com
Roles of sonic hedgehog signaling in retinal patterning and neurogenesis during mammalian eye development
Summary: Temporal disruption of sonic hedgehog signaling reveals stage-specific roles in eye cup patterning and in regulating proliferation, progenitor competence and fate specification during retinal...
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Carol Schuurmans @carolschuurmans.bsky.social · 17/03/2026
Join us in Toronto, July 13–16 for the International Conference on Neurogenesis and Repair. Featuring keynote Dr. Jeffrey Macklis (Harvard), 13 short‑talk slots, poster sessions, and many trainee travel awards Details + registration: event.fourwaves.com/neurogenesis... Hope to see you there!
event.fourwaves.com
Neurogenesis and Repair 2026
Join Neurogenesis and Repair 2026, July 13-16, 2026. Learn more on Fourwaves.
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Phil Ruzycki @phruzycki.bsky.social · 09/04/2026
New paper out 🚨! Excited to share this collab between my lab and @kerschensteiner.bsky.social's group, expertly led by Ning Shen. We used a genome-wide in vivo CRISPR screen to uncover novel neuroprotective strategies in the P23H mouse retina, with validation in a new human retina culture model.
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Daniel Kerschensteiner @kerschensteiner.bsky.social · 09/04/2026
New study led by Ning Shen w/ @phruzycki.bsky.social: a genome-wide in vivo CRISPR screen in a retinitis pigmentosa mouse model identifies genes whose loss accelerates photoreceptor death. Overexpressing two, UFD1 and UXT, preserves photoreceptors, retinal function, and vision. 🧵
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Anna La Torre @latorrelab.bsky.social · 12/03/2026
New paper out! 🚨 We show that Ndufs4 loss triggers retinal neurodegeneration through a phased process. A new window into neuroimmune mechanisms in mitochondrial disease: link.springer.com/article/10.1...
link.springer.com
Cell-intrinsic vulnerability and immune activation cooperate to drive degeneration in a mitochondrial complex I deficiency model of optic neuropathy - Journal of Neuroinflammation
Journal of Neuroinflammation - Mitochondrial dysfunction is a central hallmark of many optic neuropathies, yet the mechanisms linking intrinsic metabolic stress to retinal ganglion cell (RGC)...
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Justin Kumar @flyeyelab.bsky.social · 10/03/2026
The 2026 Visual System Development GRC and GRS are fast approaching. Jeremy Kay, Kristen Kwan, Robert Johnston, and I have built an exciting program that we hope you will enjoy. Looking forward to seeing everyone at the meeting this summer in beautiful Maine. Register and RT!
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Ryan MacDonald @macdonaldlab.bsky.social · 03/03/2026
Excited to share our new manuscript from the Yoshimatsu and MacDonald labs. www.biorxiv.org/content/10.6.... We found that my favourite glial cells can regulate local retinoic acid signalling to specialise cone photoreceptors for high acuity visual function.
Muller glia (green) regulate local retinoic acid signalling to specialise photoreceptor outer segments (magenta)for high acuity visual function
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Bob Johnston @bobbyjeyeguy.bsky.social · 25/02/2026
I'm excited to share our PNAS paper from 1st author Kasia Hussey. We study how the foveola, the high acuity region of the retina, is patterned by RA and TH. We were surprised to find that cone subtypes appear to convert fates. Our studies are important for AMD sufferers. www.pnas.org/doi/10.1073/...
pnas.org
A cell fate specification and transition mechanism for human foveolar cone subtype patterning | PNAS
In the central region of the human retina, the high-acuity foveola is notable for its dense packing of green (M) and red (L) cones and absence of b...
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Michel Cayouette @michelcayouette.bsky.social · 04/02/2026
Happy to announce that our latest paper is now out! Have you ever wondered how neural tissues control their size? In this paper, we show that cell division orientation is critical in both the cortex and retina. www.science.org/doi/10.1126/...
science.org
Oriented cell divisions induce basal progenitors and regulate neural expansion across tissues and species
A fundamental role for division orientation in progenitor output driving cortical and retinal growth is revealed.
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Seth Blackshaw @sethblackshaw.bsky.social · 16/01/2026
The lab's first paper of the new year is out. In it, we investigate the role of the late stage retinal progenitor-enriched SoxE family factors Sox8 and Sox9 in controlling retinal development./1 www.biorxiv.org/content/10.6...
biorxiv.org
Sox8 and Sox9 regulate differentiation and nuclear positioning of retinal Müller glia
Temporal patterning of retinal progenitor cells governs the sequential generation of retinal cell types, with gliogenesis occurring late in development. Sox8 and Sox9, members of the SoxE transcription factor family, are highly expressed in late-stage retinal progenitor cells and mature Müller glia, yet their functional roles remain incompletely defined. Here we employed gain- and loss-of-function approaches, single-cell multiomic profiling, and injury models to investigate Sox8/9 function. Overexpression of SOX8 and/or SOX9 in early-stage retinal progenitor cells suppressed early-born cell fates and promoted photoreceptor generation, consistent with a role in late-stage temporal identity. Conversely, conditional deletion of Sox8 and/or Sox9 in late-stage progenitors did not impair Müller glia specification, but caused radial displacement of Müller glia nuclei into the outer retina and modest changes in glial gene expression. Loss of Sox8/9 in mature Müller glia modestly increased proliferation post-injury without inducing neurogenic competence. These findings suggest that Sox8/9 are dispensable for gliogenesis and repression of neurogenic competence, but are essential for proper laminar positioning and maturation of retinal Müller glia. ### Competing Interest Statement S.B. is a cofounder, shareholder, and scientific advisory board member of CDI Labs LLC, and receives research support from Genentech. National Eye Institute, https://ror.org/03wkg3b53, R01EY036173
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Bob Johnston @bobbyjeyeguy.bsky.social · 07/01/2026
G+D together with JHU worked to put together this cool video describing our latest work! Check it out!
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Baptiste Lacoste @blacoste.bsky.social · 17/12/2025
New preprint from the lab! For those who love astrocytes 🤩. We welcome feedback! #preprint #openaccess #astrocytes #autism
biorxiv.org
Metabolic, epigenetic and transcriptomic alterations in postnatal 16p11.2 deficient murine astrocytes
Autism Spectrum Disorders (ASD) are associated with metabolic dysregulation. While astrocytes are integral to cerebral metabolism, their molecular and functional changes in ASD are poorly known. Using...
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Yohey Ogawa @yohey-ogawa.bsky.social · 16/12/2025
🧬👁️ Our Science Advances paper is published! snATAC-seq analysis across lamprey to human retina uncovers deeply conserved cis-regulatory codes in all six retinal cell types — even with extensive enhancer turnover. Immensely grateful to my coauthors and collaborators. 🙏 www.science.org/doi/10.1126/...
science.org
Conservation of cis-regulatory codes over half a billion years of evolution
The regulatory codes controlling vertebrate retinal gene expression have been conserved over more than half a billion years.
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pickettslab.bsky.social @pickettslab.bsky.social · 10/11/2025
Excited to share our paper with Ghayda Mirzaa describing the novel SMARCA1-related NDD. Out today in Nature Communications. rdcu.be/ePaDp
rdcu.be
Pathogenic variants in SMARCA1 cause an X-linked neurodevelopmental disorder modulated by NURF complex composition
Nature Communications - The authors identify pathogenic variants in the SMARCA1 gene as the cause of a variable neurodevelopmental disorder. Mouse studies suggest diverse genetic mechanisms related...
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Michel Cayouette @michelcayouette.bsky.social · 29/10/2025
Our latest paper is out! While the circadian photoentrainment circuit has been extensively studied, the mechanisms regulating its development remain poorly understood. Here we show that retinal Müller glia play a key role in this process. Check it out! www.sciencedirect.com/science/arti...
sciencedirect.com
Retinal glia regulate development of the circadian photoentrainment circuit
Circadian photoentrainment depends on intrinsically photosensitive retinal ganglion cells (ipRGCs), which convey environmental light information to th…
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Anna La Torre @latorrelab.bsky.social · 10/10/2025
New preprints from the lab (3)! www.biorxiv.org/content/10.1...
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Marcos Aranda @marcosaranda.bsky.social · 30/09/2025
Our paper is out today! In @tiffmschmidt.bsky.social lab, we identified a single transcription factor, BRN3B, that shapes multiple, key features that define diverse ipRGC subtypes🧬👁️🐭
urldefense.com
Genetic tuning of retinal ganglion cell subtype identity to drive visual behavior
Nature Communications - This study reveals that graded expression of the transcription factor BRN3B fine-tunes the identity and function of melanopsin-expressing ipRGC subtypes in the retina....
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Anna La Torre @latorrelab.bsky.social · 17/09/2025
New preprints from the lab!! (2)
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Anna La Torre @latorrelab.bsky.social · 17/09/2025
🎉 New preprints from the lab! (1) www.biorxiv.org/content/10.1...
biorxiv.org
Novel Roles of Sonic Hedgehog Signaling in Retinal Patterning and Neurogenesis During Mammalian Eye Development
The Sonic Hedgehog (Shh) signaling pathway is essential for the patterning, growth, and morphogenesis of many tissues. During early eye development, Shh is critical for the formation of the two optic ...
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Joel Miesfeld @joelmiesfeld.bsky.social · 16/09/2025
A big thanks to the NEI for supporting my new R01 and MCW for highlighting the research focus. We’ve already made some interesting discoveries and I’m excited to see how the research progresses for years to come. www.mcw.edu/mcwknowledge...
mcw.edu
Preventing Blindness by Untangling the Genetic Network of Vision Neurons
Dr. Joel Miesfeld’s lab studies the mechanisms behind retinal ganglion cells to better understand vision development.
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Ismael Hernández Núñez @ismaelhdeznunez.bsky.social · 04/09/2025
Happy to share the definitive version of our last paper about the role of TET enzymes and DNA demethylation in retinal development @clark-lab-retina.bsky.social journals.plos.org/plosbiology/...
journals.plos.org
Active DNA demethylation upstream of rod-photoreceptor fate determination is required for retinal development
TET enzymes remove DNA methylation markers, but the role of this process in retinal development is not clear. This study shows that these enzymes are required for photoreceptor cells to initiate the g...
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Brian Clark @clark-lab-retina.bsky.social · 06/08/2025
Our work on the TET enzymes in retinal development is out. We identified that rod fate is inhibited when DNA demethylation is prevented by removal of the TET enzymes. Interestingly, photoreceptor numbers are normal. We utilized WGBS and bACE-seq to profile the precise localization of 5mC and 5hmC,…
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PLOS Biology @plosbiology.org · 05/08/2025
TET enzymes remove #DNAmethylation markers; @ismaelhdeznunez.bsky.social @clark-lab-retina.bsky.social &co show that these enzymes are required for #photoreceptor cells to initiate the genetic program to become rods instead of cones, & for maturation of the #retina @plosbiology.org 🧪 plos.io/3UaVBfl
Left: The active DNA methylation cycle. (i) 5mC is added by DNMTs. (ii) The TET enzymes oxidize 5mC to 5hmC. (iii) 5hmC is converted to 5fC and 5caC by the TET enzymes, followed by conversion back to cytosine by TDG and the base-excision repair pathway. (iv) Alternatively, APOBEC converts 5mC to thymine, causing DNA mismatch. Right: H&E staining of an allelic series of TET conditional P21 mutants.
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Sriram S @srirams433.bsky.social · 24/05/2025
If you're interested in how Mef2c tunes neuronal response to repulsive guidance cues in the cortex, here's a link to the paper: www.jneurosci.org/content/45/2...
jneurosci.org
Mef2c Controls Postnatal Callosal Axon Targeting by Regulating Sensitivity to Ephrin Repulsion
Intracortical circuits, including long-range callosal projections, are crucial for information processing. The development of neuronal connectivity in the cerebral cortex is contingent on ordered emer...
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Anna La Torre @latorrelab.bsky.social · 30/04/2025
So you want to study the optic nerve head. You’re thinking a Pax2-Cre driver should work, right? Well, think again: pubmed.ncbi.nlm.nih.gov/40300047/
pubmed.ncbi.nlm.nih.gov
Excluding the Genomic Location of Pax2 Regulatory Elements for the Developing Mouse Eye - PubMed
The Pax2 transcription factor is activated uniformly in the optic vesicle/cup, but becomes progressively restricted to the forming optic disc and stalk. In the eye, it is not known how Pax2 expression...
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Seth Blackshaw @sethblackshaw.bsky.social · 29/04/2025
Our latest manuscript (7 years in the works) tackles the question of how diurnal ground squirrels evolved a cone-dominant retina, in contrast to the ancestral rod-dominant retina retained by virtually all other mammals./1 www.biorxiv.org/content/10.1...
biorxiv.org
Heterochronic transcription factor expression drives cone-dominant retina development in 13-lined ground squirrels.
Evolutionary adaptation to diurnal vision in ground squirrels has led to the development of a cone-dominant retina, in stark contrast to the rod-dominant retinas of most mammals. The molecular mechani...
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Surfin' NuRD @surfinnurd.bsky.social · 12/04/2025
Funded PhD Studentship available in my lab at @lsiexeter.bsky.social. Want to study how chromatin remodellers act on enhancers to facilitate cell fate decisions in human pluripotent cells? Want to work and live in a lively city by the sea? Get in touch/Apply! lsi.exeter.ac.uk/groups/hendr...
lsi.exeter.ac.uk
Hendrich Group - Starting Sept 2025 - Living Systems Institute - University of Exeter
Opportunity for LSI PHD studentship – starting in September 2025 or January 2026 PhD Studentship applications will open on 1st...
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Revathi Balasubramanian @ladyglaucoma.bsky.social · 27/03/2025
My lab studies mechanisms of pediatric glaucoma and the development of tissues affected (Schlemm's canal and trabecular meshwork). I am getting creative with fundraising because, well... So if you know someone who might be interested in funding our work: joinus.cuimc.columbia.edu/index.cfm?fu...
joinus.cuimc.columbia.edu
I'm supporting Your Columbia!
Your Columbia is your opportunity to be a part of the unparalleled research, education, and clinical care that takes place every day at Columbia University Irving Medical Center. It’s a potent and imp...
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Nicholas M Tran @nmtranlab.bsky.social · 25/02/2025
After injury some RGCs survive but do they thrive? In this collaboration with Jonathan Demb's lab (Yale), we looked into the physiology of resilient RGCs after axon injury. Their visual responses largely remain intact but they exhibit reduced intrinsic excitability, coincident with AIS disassembly.
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Pierre Mattar @pierre-mattar.bsky.social · 22/02/2025
Momentous day yesterday as Ivana Herrera successfully defended her doctoral thesis. Huge congratulations to her (seated center). Very proud of her!
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Pierre Mattar @pierre-mattar.bsky.social · 09/02/2025
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Ryan MacDonald @macdonaldlab.bsky.social · 07/02/2025
We’re hiring a new research fellow. Come join us in London to study glial cells in the ageing retina using killifish as a model. www.ucl.ac.uk/work-at-ucl/...
ucl.ac.uk
UCL – University College London
UCL is consistently ranked as one of the top ten universities in the world (QS World University Rankings 2010-2022) and is No.2 in the UK for research power (Research Excellence Framework 2021).
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Pierre Mattar @pierre-mattar.bsky.social · 05/02/2025
Jack this morning: It warm!!
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Brian Clark @clark-lab-retina.bsky.social · 04/02/2025
First post on this platform is to announce that our preprint is posted to bioRxiv: bioRxiv 2025.02.03.636318; doi: doi.org/10.1101/2025...
doi.org
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Black In Neuro @blackinneuro.bsky.social · 03/02/2025
Happy Black History Month ✊🏾 This month, as we do every month, we celebrate Black history and all the many accomplishments our people have made inside and outside of science. We are all Black history yall. We love our community and wish you all joy and peace 🖤
A black history flyer with a black background and brown fists in the air. Behind the black fists are red, yellow, and green stripes with the Black In Neuro logo at the top center.
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Andrew Simmonds 🇨🇦 @simmondlab.bsky.social · 03/02/2025
Looking for a high qualtiy scientific meeting being held in Canada this year? The 12th Canadian Developmental Biology Meeting (Regional SDB @socdevbio.bsky.social meeting) is happening May 25-28 in Kelowna BC. Registration is now open! www.sdbonline.org/meeting?Reso...
sdbonline.org
Society for Developmental Biology | Meeting
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Nikos Konstantinides @nkonst4.bsky.social · 29/01/2025
NEW PAPER ALERT! In this paper that was posted today on @biorxivpreprint.bsky.social, Felix Simon from our lab at @ijmonod.bsky.social (with important contributions by Isabel Holguera and a small contribution from yours truly) completed the trifecta. www.biorxiv.org/content/10.1...
biorxiv.org
Establishment of terminal selector combinations in optic lobe neurons
The medulla is the part of the Drosophila optic lobe with the greatest neuronal diversity, in which the identity of each neuronal type is specified in progenitors and newborn neurons via the integrati...
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Cedric Boeckx @cedricboeckx.bsky.social · 22/01/2025
In one sentence (but see 🧵 for details): we show that CHD2 dosage critically regulates the autolysosomal pathway, which in turn impacts neurodevelopmental tempo. This matters for disease (epilepsy/autism), but also for evolution (neoteny/bradychrony) www.biorxiv.org/content/10.1...
biorxiv.org
CHD2 Dosage Ties Autolysosomal Pathway to Cortical Maturation in Disease and Evolution
The relatively slow pace of cortical development in humans has long been a topic of investigation. Studies seeking to understand the underlying mechanisms have mostly focused on neurogenetic compariso...
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Ciaran Murphy-Royal @murphyroyallab.org · 17/01/2025
Come join us @umontreal.ca - We're looking to recruit a Professor in the field of neurobiology, with a focus on linking neurodevelopment to neural circuit function and dysfunction. #neuroskyence #neuroscience 🧪 See ad below - www.fens.org/careers/job-...
fens.org
Principal Investigator in neurodevelopment/Assistant Professor - CHU Sainte-Justine Azrieli Research Centre/ Université de Montréal - Federation of European Neuroscience Societies
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Pierre Mattar @pierre-mattar.bsky.social · 18/01/2025
Two new papers to... er... skeet? Blurt? Bluert? First is that our paper on the transcription factor Adnp and the ChAHP chromatin remodelling complex is now out. www.pnas.org/doi/10.1073/... I already blurted the paper here: bsky.app/profile/pier...
pnas.org
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Baptiste Lacoste @blacoste.bsky.social · 16/01/2025
Excited to take on a new role as the next Director of the Regenerative Medicine Program at the Ottawa Hospital Research Institute ! Can't wait to support/promote innovative ideas, and engage collaborative networks to positively impact the life of patients and their care givers. Exciting times ahead!
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Pierre Mattar @pierre-mattar.bsky.social · 26/12/2024
Did Santa really just send me proofs for Xmas? Yes. Yes he did.
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Pierre Mattar @pierre-mattar.bsky.social · 07/12/2024
Kid 1: COVID. Kid 2: tonsilitis (not COVID somehow). Car battery: dead. How's your Saturday going so far? 😂
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Pierre Mattar @pierre-mattar.bsky.social · 14/02/2024
New preprint from the lab. This one is (again) about about modelling neurodevelopmental disorders. Here, we focus on the link between chromatin remodellers (ADNP and CHD4) and cortical development. #NDDs and #cortical development. www.biorxiv.org/content/10.1...
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Pierre Mattar @pierre-mattar.bsky.social · 14/02/2024
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Pierre Mattar @pierre-mattar.bsky.social · 27/01/2024
Glad to see snowmen finally being emotionally honest with themselves.
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Pierre Mattar @pierre-mattar.bsky.social · 24/12/2023
Compound eye selfie
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