Intestines
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Microvilli in motion
Live cell imaging studies have revealed that microvilli — finger-like protrusions on the surface of epithelial cells — move and collide as they form the brush border. Read MoreSeptember 19, 2019
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Host-microbe interactions in the gut
Vanderbilt investigators demonstrated that intestinal cells promote beneficial microbe behavior — the findings support developing microbiota-based therapies for intestinal health. Read MoreAugust 13, 2019
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Intestinal immune cell interactions
Understanding the roles of various immune cells that reside in the gut lining could shed light on inflammatory bowel diseases. Read MoreJuly 30, 2019
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Cell skeleton and the brush border
Vanderbilt researchers have discovered a role for microtubules — part of the cellular “skeleton” — in organizing the unique sidedness of the epithelial cells that line organs like the intestines. Read MoreJanuary 31, 2018
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Lineage tracing in the gut
Vanderbilt investigators have developed an algorithm to classify cell types from experimental data, making it possible to understand how organs develop. Read MoreNovember 30, 2017
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Motoring to the tips of the brush border
New findings implicate a motor protein in the assembly of the brush border in the intestines and kidneys – a specialized surface that is critical for healthy organ function. Read MoreOctober 6, 2016
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Building intestinal brush borders
Studies of the molecular complex that helps build specialized cellular surfaces could shed light on the mechanisms underlying a genetic deaf-blindness syndrome accompanied by intestinal disease. Read MoreFebruary 8, 2016
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Immune cells that guard against ingested pathogens discovered
Vanderbilt investigators have discovered a new type of immune cell residing in the intestinal epithelium that may function as a first line of defense against ingested pathogens. Read MoreOctober 9, 2014
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Nutrient-absorbing surface’s assembly revealed: study
Vanderbilt University researchers have discovered how intestinal cells build the "brush border" -- a specialized surface structure that is critical for absorbing nutrients and defending against pathogens. Read MoreApril 17, 2014
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Defusing ‘C. diff’ infection
Clostridium difficile on the intestinal lining. (Wellcome Images) Clostridium difficile (“C. diff”) infection is a leading cause of hospital-associated diarrhea, and the frequency and severity of infections are on the rise. D. Borden Lacy, Ph.D., associate professor of Pathology, Microbiology and Immunology, and colleagues recently demonstrated that the… Read MoreNovember 8, 2013