Scientist in developmental biology/regenerative medicine. Full time dad, part time mountaineer. Private account, opinions are my own; professional: @StrickerLab
Paper alert! Super proud to share Pedro Vallecillo’s postdoc masterpiece now online @ImmunityCP: A local subset of mesenchymal cells expressing the transcription facto... https://t.co/u6LaetTOph
Excited to share the second piece of my PhD work! Our paper on generating 2D and 3D spatial transcriptomic maps of whole mouse embryos during early organogenesis with @adrianobolondi@Luyi_T is out in @NatureGenet 🐭🧬 @MPI_MolGen@broadinstitute.
https://t.co/Bz7vDWeAag
Delighted to share our latest work on BioRxiv. During her PhD, @GarciaPaulineJ relentlessly studied the impact of removing the H3K9 methyltransferase Setdb1 in muscle stem cells. Strikingly she found Setdb1 is absolutely required for regeneration 1/n
https://t.co/V6m2gVwE7l
Wer hat sich schon mal gefragt, wie Lymphknoten eigentlich im Embryo entstehen...? Tip: mesenchymale Stromazellen sind der Schlüssel! @VBIOeV@GfEeV@bionity_de@TVVde
We soon realized that Osr1 KO mice do not form lymph nodes, and asked whether mesenchymal cells at the sites of lymph node initiation might use overlapping mechanisms to those that coordinate muscle patterning. In a nutshell, they do…
Paper alert! Super proud to share Pedro Vallecillo’s postdoc masterpiece now online @ImmunityCP: A local subset of mesenchymal cells expressing the transcription facto... https://t.co/u6LaetTOph
While doing genetic lineage tracing we realized massive contribution of Osr1+ mesenchymal cells to nascent lymph nodes, which was a classic “hm… that’s funny” moment.
Neue Erkenntnisse zur Entstehung von #Lymphknoten:
Forscherteam unter Leitung von Wissenschaftlern @fu_berlin identifiziert Stromazellen als wichtigen Faktor für die Anlage von Lymphknoten ⬇️
https://t.co/HoODfhNUmd
New study from our lab: We show that Osr1 is a key transcriptional regulator of FAPs during muscle regeneration. Osr1 is required to sustain pro-regenerative FAP function, loss of Osr1 leads to a detrimental pro-fibrotic state in FAPs actively suppressing regenerative myogenesis
Hey #myotwitter new paper from the lab now online: https://t.co/XGxkDHGnqS
@GeorgeKotsaris shows that Odd-skipped related 1 is a central regulator of FAPs in skeletal muscle regeneration
This is why scientists to #animaltesting.
The first humans to take the drugs will be the volunteers in the first round of clinical trials. The mouse is here to make sure it's safe for them.
#Animalresearch saves lives.
#scicomm. Thx @animalresearch
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Interested in the identification of #markergenes from single-cell data? Now it’s possible using our “Association Plots” adapted to SC data!
https://t.co/4p6vTH4UES @JmolBiol
by @ela_gralinska, @ClemensKohl, Bita Sokhandan Fadakar, and Martin Vingron
#scRNA#Rpackage
Je cherche à embaucher un bio-informaticien pour travailler sur les approches ATAC-seq en noyaux unique. I am hiring a bio-informatician to work on single nuclei ATAC-seq. Please spread!
Pleased and Honored to have received an #ERC Advanced Grant for STENIPATH. Impact of distal pathologies on stem cell function in mouse and human. Lots of fun experiments! Please apply 🧐😊