Artwork

Content provided by The Stem Cell Podcast. All podcast content including episodes, graphics, and podcast descriptions are uploaded and provided directly by The Stem Cell Podcast or their podcast platform partner. If you believe someone is using your copyrighted work without your permission, you can follow the process outlined here https://player.fm/legal.
Player FM - Podcast App
Go offline with the Player FM app!

Ep 142: “Beta-Cell Proliferation and Diabetes” Featuring Dr. Adrian Teo

1:11:50
 
Share
 

Archived series ("Inactive feed" status)

When? This feed was archived on April 03, 2024 17:25 (21d ago). Last successful fetch was on February 28, 2024 15:58 (2M ago)

Why? Inactive feed status. Our servers were unable to retrieve a valid podcast feed for a sustained period.

What now? You might be able to find a more up-to-date version using the search function. This series will no longer be checked for updates. If you believe this to be in error, please check if the publisher's feed link below is valid and contact support to request the feed be restored or if you have any other concerns about this.

Manage episode 233856471 series 31036
Content provided by The Stem Cell Podcast. All podcast content including episodes, graphics, and podcast descriptions are uploaded and provided directly by The Stem Cell Podcast or their podcast platform partner. If you believe someone is using your copyrighted work without your permission, you can follow the process outlined here https://player.fm/legal.
Guest: Dr. Adrian Teo is a Principal Investigator at the Institute of Molecular and Cell Biology at the Agency for Science, Technology and Research (A*STAR) in Singapore. His research focuses on using stem cell technology to model human pancreatic development in vivo and to study the mechanisms that cause diabetes and underlie diabetic complications. Featured Products and Resources: Pancreatic Cell News Ray Dunn Webinar Resources and Links Advancing Cell Therapies for Diabetes - Researchers mapped stem cell-derived beta cell differentiation, and developed an improved process for purifying beta cells, which can be used to enhance cell therapies for diabetes. Essential Role of YAP in Liver Regeneration - YAP signaling, which activates the transcription of certain genes, has been shown to be necessary for the survival and regeneration of liver epithelial cells upon injury. Gene Therapy Repairs Heart Attack Damage in Pigs - Expression of a microRNA delivered by adeno-associated viral vectors stimulated cardiac repair in pig hearts following a heart attack. How Low Oxygen Affects the Premature Brain - Using 3D brain-region-specific organoids, research have identified certain brain cells that are susceptible to harm from exposure to oxygen deprivation during early development. Tumor-Initiating Cells Addicted to Methionine - Scientists have found that tumor-initiating cells are metabolically dependent on methionine, providing a potential therapeutic target. Photo Reference: Courtesy of Dr. Adrian Teo #footable_5807 { font-family: inherit; font-size: 14px; } #footable_parent_5807 thead { display: none; } #footable_parent_5807 a.nt_edit_link { display: none; } #footable_parent_5807 td { border-color: #fff; } #footable_parent_5807 img { margin-top: 0px; } .semantic_ui .ui.table { border: 0px solid !important; } .semantic_ui .ui.table td { padding: 0em; } #footable_5808 { font-family: inherit; font-size: 14px; } thead { display: none; } #footable_parent_5808 a.nt_edit_link { display: none; } #footable_parent_5808 td { border-color: #fff; } #footable_parent_5808 img { margin-top: 0px; } .semantic_ui .ui.table { border: 0px solid !important; } .semantic_ui .ui.table td { padding: 0em; } #footable_5807 { font-family: inherit; font-size: 14px; } #footable_parent_5807 thead { display: none; } #footable_parent_5807 a.nt_edit_link { display: none; } #footable_parent_5807 td { border-color: #fff; } #footable_parent_5807 img { margin-top: 0px; } .semantic_ui .ui.table { border: 0px solid !important; } .semantic_ui .ui.table td { padding: 0em; } #footable_5808 { font-family: inherit; font-size: 14px; } thead { display: none; } #footable_parent_5808 a.nt_edit_link { display: none; } #footable_parent_5808 td { border-color: #fff; } #footable_parent_5808 img { margin-top: 0px; } .semantic_ui .ui.table { border: 0px solid !important; } .semantic_ui .ui.table td { padding: 0em; } #footable_5807 { font-family: inherit; font-size: 14px; } #footable_parent_5807 thead { display: none; } #footable_parent_5807 a.nt_edit_link { display: none; } #footable_parent_5807 td { border-color: #fff; } #footable_parent_5807 img { margin-top: 0px; } .semantic_ui .ui.table { border: 0px solid !important; } .semantic_ui .ui.table td { padding: 0em;
  continue reading

286 episodes

Artwork
iconShare
 

Archived series ("Inactive feed" status)

When? This feed was archived on April 03, 2024 17:25 (21d ago). Last successful fetch was on February 28, 2024 15:58 (2M ago)

Why? Inactive feed status. Our servers were unable to retrieve a valid podcast feed for a sustained period.

What now? You might be able to find a more up-to-date version using the search function. This series will no longer be checked for updates. If you believe this to be in error, please check if the publisher's feed link below is valid and contact support to request the feed be restored or if you have any other concerns about this.

Manage episode 233856471 series 31036
Content provided by The Stem Cell Podcast. All podcast content including episodes, graphics, and podcast descriptions are uploaded and provided directly by The Stem Cell Podcast or their podcast platform partner. If you believe someone is using your copyrighted work without your permission, you can follow the process outlined here https://player.fm/legal.
Guest: Dr. Adrian Teo is a Principal Investigator at the Institute of Molecular and Cell Biology at the Agency for Science, Technology and Research (A*STAR) in Singapore. His research focuses on using stem cell technology to model human pancreatic development in vivo and to study the mechanisms that cause diabetes and underlie diabetic complications. Featured Products and Resources: Pancreatic Cell News Ray Dunn Webinar Resources and Links Advancing Cell Therapies for Diabetes - Researchers mapped stem cell-derived beta cell differentiation, and developed an improved process for purifying beta cells, which can be used to enhance cell therapies for diabetes. Essential Role of YAP in Liver Regeneration - YAP signaling, which activates the transcription of certain genes, has been shown to be necessary for the survival and regeneration of liver epithelial cells upon injury. Gene Therapy Repairs Heart Attack Damage in Pigs - Expression of a microRNA delivered by adeno-associated viral vectors stimulated cardiac repair in pig hearts following a heart attack. How Low Oxygen Affects the Premature Brain - Using 3D brain-region-specific organoids, research have identified certain brain cells that are susceptible to harm from exposure to oxygen deprivation during early development. Tumor-Initiating Cells Addicted to Methionine - Scientists have found that tumor-initiating cells are metabolically dependent on methionine, providing a potential therapeutic target. Photo Reference: Courtesy of Dr. Adrian Teo #footable_5807 { font-family: inherit; font-size: 14px; } #footable_parent_5807 thead { display: none; } #footable_parent_5807 a.nt_edit_link { display: none; } #footable_parent_5807 td { border-color: #fff; } #footable_parent_5807 img { margin-top: 0px; } .semantic_ui .ui.table { border: 0px solid !important; } .semantic_ui .ui.table td { padding: 0em; } #footable_5808 { font-family: inherit; font-size: 14px; } thead { display: none; } #footable_parent_5808 a.nt_edit_link { display: none; } #footable_parent_5808 td { border-color: #fff; } #footable_parent_5808 img { margin-top: 0px; } .semantic_ui .ui.table { border: 0px solid !important; } .semantic_ui .ui.table td { padding: 0em; } #footable_5807 { font-family: inherit; font-size: 14px; } #footable_parent_5807 thead { display: none; } #footable_parent_5807 a.nt_edit_link { display: none; } #footable_parent_5807 td { border-color: #fff; } #footable_parent_5807 img { margin-top: 0px; } .semantic_ui .ui.table { border: 0px solid !important; } .semantic_ui .ui.table td { padding: 0em; } #footable_5808 { font-family: inherit; font-size: 14px; } thead { display: none; } #footable_parent_5808 a.nt_edit_link { display: none; } #footable_parent_5808 td { border-color: #fff; } #footable_parent_5808 img { margin-top: 0px; } .semantic_ui .ui.table { border: 0px solid !important; } .semantic_ui .ui.table td { padding: 0em; } #footable_5807 { font-family: inherit; font-size: 14px; } #footable_parent_5807 thead { display: none; } #footable_parent_5807 a.nt_edit_link { display: none; } #footable_parent_5807 td { border-color: #fff; } #footable_parent_5807 img { margin-top: 0px; } .semantic_ui .ui.table { border: 0px solid !important; } .semantic_ui .ui.table td { padding: 0em;
  continue reading

286 episodes

All episodes

×
 
Loading …

Welcome to Player FM!

Player FM is scanning the web for high-quality podcasts for you to enjoy right now. It's the best podcast app and works on Android, iPhone, and the web. Signup to sync subscriptions across devices.

 

Quick Reference Guide