Home
Categories
EXPLORE
Comedy
Business
Society & Culture
Leisure
True Crime
News
Education
About Us
Contact Us
Copyright
© 2024 PodJoint
00:00 / 00:00
Sign in

or

Don't have an account?
Sign up
Forgot password
https://is1-ssl.mzstatic.com/image/thumb/Podcasts211/v4/cd/ee/10/cdee1033-1c93-079a-5a71-7d971c86c023/mza_10841278873503490561.jpg/600x600bb.jpg
Stem Cell Channel (Audio)
UCTV
100 episodes
5 days ago
Stem cell science is changing medicine and our understanding of human development. The Stem Cell Channel takes you into the labs where cutting edge-research takes place, introduces you to the scientists leading the way, and breaks down how these amazing discoveries impact everyday life and health.
Show more...
Science
RSS
All content for Stem Cell Channel (Audio) is the property of UCTV and is served directly from their servers with no modification, redirects, or rehosting. The podcast is not affiliated with or endorsed by Podjoint in any way.
Stem cell science is changing medicine and our understanding of human development. The Stem Cell Channel takes you into the labs where cutting edge-research takes place, introduces you to the scientists leading the way, and breaks down how these amazing discoveries impact everyday life and health.
Show more...
Science
https://is1-ssl.mzstatic.com/image/thumb/Podcasts211/v4/cd/ee/10/cdee1033-1c93-079a-5a71-7d971c86c023/mza_10841278873503490561.jpg/600x600bb.jpg
A Tale of Two Barriers: Plasticity of Lung Epithelium and Mesothelium
Stem Cell Channel (Audio)
58 minutes 40 seconds
11 months ago
A Tale of Two Barriers: Plasticity of Lung Epithelium and Mesothelium
Le Xu, Ph.D., examines the intricate processes underlying lung development and disease, with a focus on idiopathic pulmonary fibrosis (IPF). Xu explores the roles of genetic and cellular mechanisms, including the hedgehog pathway, FGF signaling, and epithelial-mesenchymal interactions, in driving lung fibrosis. Xu also highlights links between congenital diaphragmatic hernia (CDH) and lung development, suggesting that both mechanical and genetic factors contribute to lung hypoplasia. The discussion includes the development of advanced mouse models that replicate key aspects of human IPF, offering insights into fibrosis progression. Xu's research ultimately seeks to identify the causes of lung tissue abnormalities and pave the way for targeted therapies. Series: "Stem Cell Channel" [Health and Medicine] [Show ID: 39460]
Stem Cell Channel (Audio)
Stem cell science is changing medicine and our understanding of human development. The Stem Cell Channel takes you into the labs where cutting edge-research takes place, introduces you to the scientists leading the way, and breaks down how these amazing discoveries impact everyday life and health.