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Keywords: Inflammation
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Journal Articles
J Vasc Res (2025) 62 (1): 10–21.
Published Online: 10 December 2024
...) inhibition stimulates endothelial microvesicles (EMVs) release and (2) the effect of EMVs derived from eNOS-inhibited cells on endothelial cell eNOS, inflammation, apoptosis, and tissue-type plasminogen activator (t-PA). Methods: Human umbilical vein endothelial cells (HUVECs) were treated with the eNOS...
Journal Articles
Journal Articles
J Vasc Res (2022) 59 (3): 137–150.
Published Online: 17 January 2022
... to slow down plaque development. Increasing data indicate that plaque inflammation is intimately associated with microcalcifications, which exert harmful effects eventually culminating with plaque rupture. In this review article, we will first introduce microcalcification location, detection, and effects...
Journal Articles
J Vasc Res (2020) 57 (6): 313–324.
Published Online: 29 July 2020
... and inhibiting the L-type Ca 2+ channel. Furthermore, XAT exerts an inhibitory effect on vascular inflammation, which is correlated with the observed vascular protective effects. 4 11 2019 3 06 2020 29 7 2020 © 2020 S. Karger AG, Basel 2020 Copyright / Drug Dosage / Disclaimer...
Journal Articles
J Vasc Res (2020) 57 (4): 236–244.
Published Online: 20 May 2020
... of the vascular wall [ 6-9 ]. The inflammatory cells referred to include macrophages, CD4 + T lymphocytes, neutrophils, B lymphocytes, mast cells, and natural killer cells [ 6, 10, 11 ]. Abdominal aortic aneurysm Inflammation Leukocytes T cells Cytokines Circulating levels of IL-32 (designed...
Journal Articles
Journal Articles
Journal Articles
J Vasc Res (2017) 54 (6): 367–375.
Published Online: 15 November 2017
... or services advertised or of their effectiveness, quality or safety. The publisher and the editor(s) disclaim responsibility for any injury to persons or property resulting from any ideas, methods, instructions or products referred to in the content or advertisements. Permeability Inflammation Toll...
Journal Articles
Journal Articles
J Vasc Res (2017) 53 (5-6): 255–268.
Published Online: 07 December 2016
... Permeability Inflammation Plant fractions Rutin The lymphatic network is composed of blind-beginning thin-walled capillaries without pericyte coverage and with an incomplete basal lamina, collecting lymphatic vessels with a smooth muscle cell layer, a basement membrane, and valves that prevent lymph...
Journal Articles
J Vasc Res (2016) 53 (3-4): 163–171.
Published Online: 11 October 2016
... and the editor(s) disclaim responsibility for any injury to persons or property resulting from any ideas, methods, instructions or products referred to in the content or advertisements. Growth factor Arterial injury Endothelial cells Inflammation Adenosine triphosphate Monocytes P2Y receptors...
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Journal Articles
Journal Articles
Journal Articles
J Vasc Res (2013) 50 (2): 89–99.
Published Online: 21 November 2012
...Marie Briet; Ernesto L. Schiffrin Aldosterone exerts direct effects on the vascular system by inducing oxidative stress, inflammation, hypertrophic remodeling, fibrosis, and endothelial dysfunction. Aldosterone exerts its effects through genomic and nongenomic pathways in a mineralocorticoid...
Journal Articles
J Vasc Res (2012) 49 (6): 497–509.
Published Online: 29 August 2012
... role of the interaction partners P-selectin/PSGL-1 and VCAM-1/α4-integrin in the process of T cell rolling and capture on the inflamed BBB or inflamed leptomeningeal microvessels can be assumed [ 2,28 ]. T cell extravasation Blood-brain barrier Crawling Diapedesis Inflammation...
Journal Articles
J Vasc Res (2012) 49 (4): 353–362.
Published Online: 23 May 2012
... increased VCAM-1 expression, which was inhibited by GW4869 and SB203580. These results indicate that ET-1 stimulates arterial VCAM-1 expression through p38MAPK-dependent activation of neutral sphingomyelinases. This suggests a role for sphingolipids in ET-1-induced vascular inflammation in cardiovascular...
Journal Articles
J Vasc Res (2011) 48 (5): 415–428.
Published Online: 31 May 2011
... activation by tumor necrosis factor-α (TNF-α), migrate and grow new blood vessels, and produce appropriate extracellular matrix (ECM) for developing a basal lamina. Characterization of in vitro-derived ESC-EC and their response to environmental cues and inflammation is a critical step in assessing...
Journal Articles
J Vasc Res (2011) 48 (4): 336–346.
Published Online: 27 January 2011
...Christophe Guitton; Nathalie Gérard; Thibaut Quillard; Béatrice Charreau Background: The endothelial cell (EC) protein C receptor (EPCR) negatively regulates coagulation and inflammation. Factors and mechanisms regulating the expression of cell-bound EPCR and the release of soluble (s) EPCR...
Journal Articles