Happy to share a new work from my lab published in Cell https://t.co/1k49EcolAk We establish a time-series endothelial atlas covering entire mice embryonic development, which help us to identify Casz1 as critical gene for lung vascular development.
🧬 We drew a "growth map" of the vascular system, revealing how blood vessels form organ-specific identities during embryonic development.
This map solves a long-standing mystery and provides a blueprint for repairing or regenerating the body's vital vessel networks.
#CAS #BiomedicalResearch #HumanHealth #Genetics #DevelopmentalBiology #VascularBiology
@BiomedErs Thank you for your interest,but it is difficult to explain in more details in Twitter. We have uploaded all code in Github,which include everything.
Happy to share a new work from my lab published in Cell https://t.co/1k49EcolAk We establish a time-series endothelial atlas covering entire mice embryonic development, which help us to identify Casz1 as critical gene for lung vascular development.
Bone remodeling is traditionally driven by osteoblasts and osteoclasts, but our study reveals a third essential player: "Type R capillaries".
Excited to share my PhD work from @ralfhadams lab, now published in @NatureCellBio.
https://t.co/KMTIlSBnjl
🧵1/8👇 🐭🔬🦴
@CarebyEmily Regarding impact to neurovascular coupling, I would suggest to perform more cell-cell communication prediction based on scRNA-seq, which is not very popular in that field as far as I know. But based on my experience, this approach may uncover new coupling mechanism.
Neurovascular coupling has been investigated for decades but no other cells are reported to have similar nice alignment with blood vessel. Our recent work reports the importance of ductal-endothelial alignment during pancreatic inflammation.
https://t.co/ONg7g97dpM
@CarebyEmily Many thanks for your interest. For some reason, we have not gone that deep to fully uncover the molecular mechanism governing epithelial-endothelial coupling. But in Fig.S1, it is very apparent that blood vessel provides template and attract ductal epithelial cell
The moment when stem cells switch their niches during development is absolutely fascinating, and @ralfhadams lab just showed us how is that happening. Fabulous work🤩🔥!!! A specialized bone marrow microenvironment for fetal haematopoiesis | https://t.co/JlmFCAKIB0