Cheers to Philipp Dexheimer/ https://t.co/YBw9GIgQex who instilled his art into our journey towards in vitro modelling of human pluripotency transitions through the germline 🌀 /3
Thrilled to share our latest paper, now out as cover story!
📄Paper: High resolution multi-scale profiling of embryonic germ cell-like cell derivation reveals pluripotent state transitions in humans: Stem Cell Reports https://t.co/r0O3VdbYFW /1
Transitioning from human primordial germ cells to embryonic germ cells. New research applies multi-omic profiling to resolve their pluripotent & epigenetic dynamics, providing new insights into potential mechanisms underlying human germ cell tumorigenesis. https://t.co/iQwbDqniwL
New in vitro model provides a highly tractable system to study human pluripotent & early developmental transition. High resolution multi-scale profiling of embryonic germ cell-like cell derivation reveals pluripotent state transitions in humans https://t.co/v2fl92itEV
Collaborators, including Drs. Caporale, @gtesta72, & @HGLeitch, report the first fully defined system to track the #pluripotent state transitions between hPSCs and human primordial germ cells-like cells.
https://t.co/KzHAFF1b8i
establishing a living atlas to ground an iterative process of continuous refinement by the scientific community.
Neural Organoid Hormonal Atlas (NOHA)
Explore it here 💻[https://t.co/co5XF1z2q9]
/16
NewPreprint alert 📢
Thrilled to share our new work: A molecular cell atlas of endocrine signalling in human neural organoids
📄 Paper: [https://t.co/vFMmV1dn2h]
💻 Github: [https://t.co/co5XF1z2q9]
Eager to know more? 👉🧵
1/
🌟 Join us at the Neurogenomics Conference to explore neurodevelopment, brain evolution, neurodegeneration, stem cell and organoid disease modelling, and more!
Register by 31 Mar https://t.co/9TUAzJqjsM
We made the cover! Cheers to Philipp Dexheimer https://t.co/Q3cJstAPor who instilled his art into our journey towards modelling neurodiversity at scale and kudos to the talent and passion of @NicoloCaporale@CarloEmanueleV1@castaldi_davide@RigoliMt and all co-authors
🌟 Join us at the Neurogenomics Conference!
🧠 Dive into cutting-edge research on neurodevelopment, brain evolution, neurodegeneration, and more!
Registrations close 31 Mar – spots are limited, first-come, first-served! 👇
The team of @gtesta72 have developed methods for multiplexing cortical organoid development to trace neurodevelopmental trajectories at high resolution and at scales. They report SCanSNP, an algorithm to deconvolve cell identities.
https://t.co/uzdlxV644S
There is still time to register! ⌛️
A truly unique course on single-cell omics analysis on the brain, with outstanding speakers and very useful hands-on sessions. I highly recommend not to miss this special opportunity!🧠💻
🧠 Are you a bioinformatician with knowledge of omics techniques? Give your research a boost with #BrainOmics 2.0, a unique interdisciplinary hands-on course on computational tools for single-cell omics data analysis with a focus on the brain.
Apply now👉 https://t.co/yfZkMgwInR
Fantastic to have received our first @cziscience grant at @humantechnopole
to develop machine learning methods for population scale single-cell data - congrats @C_Glastonbury 💪🙌🎉🎉🎉
It’s finally out! 🥳 Today @cellcellpress we report non-mineral fossils of ancient chromosomes in skin from a woolly mammoth that died in Siberia, 52,000 years ago.
🦣💨
Don’t miss our thread below! 🧵👇🏽