Endothelial Cells & Capillary Leak - The Pierce Lab at Yale School of Medicine
September 16, 2026About the speakers
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- 14488
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- 00:05The endothelial cells line every single vessel of the body
- 00:08from the large aorta that pumps blood out of the heart
- 00:11to even the capillary cells that get one tenth the size of a human hair,
- 00:16and so it's the endothelial cells that are in contact with the blood
- 00:20that regulate the blood flow, the platelet activation, the immune cell activation.
- 00:24There's at least 11 different types of endothelial cells in the lung alone.
- 00:29The heart probably has six different types of endothelial cells
- 00:32and what's important for me is that all of these endothelial cells
- 00:35respond differently to infection or trauma.
- 00:43My lab focuses on blood vessel dysfunction in critically ill children,
- 00:47and we're keen to really understand how to diagnose
- 00:50the differences between endothelial cell activation,
- 00:54which is generally a helpful process to stop blood bleeding where a cut is,
- 00:59or to bring immune cells to where an infection is,
- 01:01from endothelial cell dysfunction, which is bad,
- 01:04which allows too much bleeding or recruits too many or not enough immune cells.
- 01:10We're especially focused on how the endothelial cells regulate the vascular barrier.
- 01:15When someone becomes critically ill,
- 01:16their hands and their face get all swollen.
- 01:18That swelling happens in their organs too,
- 01:21and that leads to the organs not working properly
- 01:24and so my lab exists to undetstand
- 01:27how this phenomenon called capillary leak,
- 01:29where blood volume leaks from inside the blood vessel space
- 01:33to outside the blood vessel space, happens.
- 01:42It's very challenging because endothelial cells are on the inside of the blood vessels.
- 01:46So they're hard to study.
- 01:47But my lab starts with a highly translational process.
- 01:50We get samples at the bedside of critically ill children,
- 01:54whether it's blood, lung fluid
- 01:56or actually we found a way to collect individual endothelial cells and analyze them
- 02:02and identify processes or targets that we can then study in cultured endothelial cells
- 02:08and collections of cells that are known as organoids.
- 02:12From that analysis, has been very, very illuminating and telling of what
- 02:17endothelial cells are doing in the blood vessels of critically ill children
- 02:26Ultimately, we want to be able to diagnose and treat capillary leak
- 02:30and capillary leak makes every disease process worse,
- 02:33and so if we had tools that could diagnose it,
- 02:36we could better triage the organ support that we provide,
- 02:40whether it's a breathing machine
- 02:42or medicines to make the heart beat faster and stronger,
- 02:44and ultimately we want to be able to treat it to give a medicine or a therapy
- 02:49that reduces the amount of blood volume leaking out into the tissues.
- 02:54I was motivated to conduct research based on my experiences at the bedside,
- 02:58and would have children come in that were critically ill,
- 03:02and we would see them get swollen
- 03:03and we would see their organs fail,
- 03:05and we had no tools to diagnose it, no new treatments.
- 03:08So I became inspired to research capillary leak
- 03:11from my clinical experiences of critically ill children.
- 03:15That translational approach still motivates us today.