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Dysfunctional glycolysis-UCP2-fatty acid oxidation promotes CTLA4<sup>int</sup>FOXP3<sup>int</sup> regulatory T-cell production in rheumatoid arthritis. [PDF]
Han J +11 more
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A model for membrane curvature generation by caveolin discs driven by differential contact interaction. [PDF]
Barnoy A +3 more
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Caveolin-1 in Skin Protection Against Radiation-Induced Skin Injuries: Pathophysiological Mechanisms and New Avenues for Prevention. [PDF]
Kruglikov IL.
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TUFT1 stabilizes TGF-β receptor II protein and facilitates activation of hepatic stellate cells into metastasis-promoting myofibroblasts. [PDF]
Li Y +9 more
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Mechanosensing in vascular health and disease. [PDF]
Schwartz MA, Del Pozo MA.
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Caveolin invasion of lipid territory. [PDF]
Barrera FN.
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The multiple faces of caveolae
Nature Reviews Molecular Cell Biology, 2007Caveolae are a highly abundant but enigmatic feature of mammalian cells. They form remarkably stable membrane domains at the plasma membrane but can also function as carriers in the exocytic and endocytic pathways. The apparently diverse functions of caveolae, including mechanosensing and lipid regulation, might be linked to their ability to respond to
Robert Parton, Kai Simons, Simons Kai
exaly +7 more sources
2009
All blood vessels are lined by a layer of endothelial cells that help to control vascular permeability. The luminal surface of vascular endothelial cells is studded with transport vesicles called caveolae that are directly in contact with the blood and can transport molecules into and across the endothelium. The vasculature within distinct tissue types
Kerri A, Massey, Jan E, Schnitzer
openaire +2 more sources
All blood vessels are lined by a layer of endothelial cells that help to control vascular permeability. The luminal surface of vascular endothelial cells is studded with transport vesicles called caveolae that are directly in contact with the blood and can transport molecules into and across the endothelium. The vasculature within distinct tissue types
Kerri A, Massey, Jan E, Schnitzer
openaire +2 more sources
Current Opinion in Lipidology, 2001
Caveolae, cholesterol-rich invaginations of the plasma membrane, have been implicated as scaffolds where signaling complexes are assembled, and as portals to which recycling or newly synthesized free cholesterol is transported prior to efflux or redistribution.
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Caveolae, cholesterol-rich invaginations of the plasma membrane, have been implicated as scaffolds where signaling complexes are assembled, and as portals to which recycling or newly synthesized free cholesterol is transported prior to efflux or redistribution.
openaire +2 more sources

