Endothelial Cells, Lung Biology, & Signaling - The Niethamer Lab at Yale School of Medicine
July 28, 2026About the speakers
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- 14368
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- 00:04Endothelial cells are thin, flat
- 00:06cells lining the blood vessels
- 00:08that deliver oxygen and nutrients
- 00:09to our tissues, but endothelial
- 00:11cells aren't just a structural
- 00:13component of this passive conduit
- 00:15of oxygen and nutrients, they're
- 00:17actually interacting with their environment.
- 00:19So, they receive signals from
- 00:21cells in their niche and
- 00:22they signal to other cells
- 00:24and that can help build
- 00:25organs,
- 00:26pattern tissues during development, but
- 00:28it can also drive some
- 00:29maladaptive processes like fibrosis or
- 00:32cancer and can participate in
- 00:33disease progression. So these cells
- 00:35are really important,
- 00:37components of the microenvironment
- 00:39in most tissues.
- 00:43We are a vascular biology
- 00:44lab and we're particularly interested
- 00:46in the lung endothelium
- 00:47and what we'd like to
- 00:48understand is how these cells
- 00:50do signal with other cells
- 00:51in the lung to build
- 00:52and rebuild three-dimensional structures. But
- 00:55we don't understand a lot
- 00:56about how it's regulated. Regulated.
- 00:58We don't understand a lot
- 00:59about how it's put together,
- 01:00how it's maintained,
- 01:02and how it's repaired during
- 01:04injury or disease. And so
- 01:05we're interested in understanding
- 01:07how endothelial cell signaling contributes
- 01:09to those processes.
- 01:13We are interested in a
- 01:14number of different ways that
- 01:16endothelial cells contribute to the
- 01:18lung, so we have to
- 01:19understand
- 01:20which endothelial cells are present,
- 01:22so we spend a lot
- 01:22of time thinking about different
- 01:24types of endothelial cells that
- 01:26maybe express different genes or
- 01:28perform different functions in the
- 01:29lung,
- 01:30and how those cells might
- 01:31change with injury or disease,
- 01:32and then how that might
- 01:33change their signaling behavior.
- 01:35So to study that, we
- 01:36do a lot of genetic
- 01:38models where we can manipulate
- 01:39these signaling molecules that these
- 01:41specific types of endothelial cells
- 01:43express.
- 01:44We also love imaging, so
- 01:45anytime we can get a
- 01:47beautiful two dimensional or three-dimensional
- 01:49image of endothelial cells, of
- 01:51overall vascular structure in the
- 01:53lung, and of how these
- 01:55cells are interacting with other
- 01:56cells, we really enjoy that.
- 01:58And then because we're interested
- 01:59in cell subtypes, we also
- 02:01do a lot of flow
- 02:01cytometry,
- 02:02to identify different cell types.
- 02:07We know now that vascular
- 02:09dysfunction is a component of
- 02:11lots of different lung diseases
- 02:12and so that includes
- 02:14acute acute lung injury that
- 02:15might happen through respiratory infections,
- 02:17chronic lung diseases like COPD
- 02:19or IPF, and then of
- 02:21course, lung cancer is the
- 02:22leading cancer cause of death
- 02:23worldwide. So I think there's
- 02:25a lot of opportunity
- 02:26to apply this knowledge, to
- 02:28understand how the endothelium contributes
- 02:30to normal lung function,
- 02:32how that might go awry
- 02:33in disease, and how we
- 02:34can maybe manipulate endothelial cells
- 02:36that are behaving badly to
- 02:38move more back towards their
- 02:39normal function and to help
- 02:40with lung disease.
- 02:43Regenerative therapies are really slim
- 02:46for lung disease. Right now,
- 02:47a lot of treatments for
- 02:48these diseases are treating symptoms.
- 02:50It's really exciting time in
- 02:52the lung biology field. We
- 02:53see a lot of new
- 02:54regenerative therapies being developed and
- 02:56tested, and so we'd like
- 02:57to help contribute to that
- 02:59by understanding the endothelial piece
- 03:00of the equation.