Our paper on how the whole #ectoderm maintains #pluripotency and enables the exceptional #NeuralCrest stem cell potential is published! Very proud of the whole team and a shout out for the first author @pajanoja for pure excellence😘! #devbio 🐣 https://t.co/frotGT5umh
Enjoyed yesterday’s ‘From preprint to publication’ webinar featuring @RogerPocockMelb
Next week, @EstermannMartin will talk to Laura Kerosuo about her work on neural crest stem cell potential - work that was preLighted by Andrew Montequin.
Register here: https://t.co/ltbq97pksu
Adameyko lab is hiring! We search for an experimentalist postdoc (preferably with a bit of computational skills) to work with us on the enigma of craniofacial development. The major project is focused on mechanisms scaling up the skull and introducing facial individuality.
Our paper that challenges #gastrulation by showing #pluripotency signature in the entire #ectoderm as bases for #neuralcrest stem cell potential formation was chosen to the editor's highlights at @NatureComms / stem cells. Very proud of the whole team!
https://t.co/o1fzdJW1Li
New preprint identifying shared and distinct mechanisms of inactivation of the #ubiquitin E1 enzyme #UBA1 across different diseases #VEXAS#SMA#lungcancer https://t.co/nPqiBmF5C7
Thanks to David Beck @nyulangone, @kyliejwalters and all contributors for a great collaboration!
https://t.co/BpChjlNCsP
A nice summary of our new paper @NatureComms explaining a paradigm shifting finding about #gastrulation: the #ectoderm does not lose the pluripotency signature, which enables maintenance of the exceptionally high stemness of #neuralcrest @NIDCR
Our paper on how the whole #ectoderm maintains #pluripotency and enables the exceptional #NeuralCrest stem cell potential is published! Very proud of the whole team and a shout out for the first author @pajanoja for pure excellence😘! #devbio 🐣 https://t.co/frotGT5umh
@marcotrizzino @RBerrens @pajanoja With the existing publications in mind (Zalc 2021, Buitrago-Delgado2015), we specifically looked for support to either of these hypotheses but didn’t find it. Instead, we saw pluripotency- like maintenance in the entire ectoderm from gastrula stage onwards
Hieno tiivistelmä uudesta työstämme @NatureComms: osoitamne miten hermostopiena saavuttaa poikkeuksellisen kantasolumaisuutensa. Alkio ei menetäkään monikykyisyyttään gastrulaatiossa, mikä mahdollistaa kasvojen, lisämunuisen ja monien kehon kudosten kehityksen. Kiitos @pajanoja
Tutkijat ovat saaneet uutta tietoa alkionkehityksen tärkeimmästä varhaisvaiheesta. Tutkimustulokset auttavat ymmärtämään monia synnynnäisiä kehityshäiriöitä paremmin. @KerosuoLab@helsinkiuni@NIH
https://t.co/DuwMe7tUeR