نتایج جستجو برای: endothelial nitric oxide synthase enos

تعداد نتایج: 353215  

2012
Natalie Marín Patricia Zamorano Rodrigo Carrasco Patricio Mujica Francisco G. González Claudia Quezada Cynthia J. Meininger Mauricio P. Boric Walter N. Durán Fabiola A. Sánchez

Rationale: Endothelial adherens junction proteins constitute an important element in the control of microvascular permeability. Platelet-activating factor (PAF) increases permeability to macromolecules via translocation of endothelial nitric oxide synthase (eNOS) to cytosol and stimulation of eNOS-derived nitric oxide signaling cascade. The mechanisms by which nitric oxide signaling regulates p...

Journal: :Cancer research 2014
Alexandre Patenaude Megan Fuller Linda Chang Fred Wong Grigorios Paliouras Rebecca Shaw Alastair H Kyle Patricia Umlandt Jennifer H E Baker Erika Diaz Jade Tong Andrew I Minchinton Aly Karsan

Notch signaling is important for tumor angiogenesis induced by vascular endothelial growth factor A. Blockade of the Notch ligand Dll4 inhibits tumor growth in a paradoxical way. Dll4 inhibition increases endothelial cell sprouting, but vessels show reduced perfusion. The reason for this lack of perfusion is not currently understood. Here we report that inhibition of Notch signaling in endothel...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2005
Antonio Martínez-Ruiz Laura Villanueva Cecilia González de Orduña Daniel López-Ferrer María Angeles Higueras Carlos Tarín Ignacio Rodríguez-Crespo Jesús Vázquez Santiago Lamas

Nitric oxide is implicated in a variety of signaling pathways in different systems, notably in endothelial cells. Some of its effects can be exerted through covalent modifications of proteins and, among these modifications, increasing attention is being paid to S-nitrosylation as a signaling mechanism. In this work, we show by a variety of methods (ozone chemiluminescence, biotin switch, and ma...

Journal: :American journal of physiology. Lung cellular and molecular physiology 2008
Ivan T Demchenko Dmitriy N Atochin Diana R Gutsaeva Ryan R Godfrey Paul L Huang Claude A Piantadosi Barry W Allen

Reactive species of oxygen and nitrogen have been collectively implicated in pulmonary oxygen toxicity, but the contributions of specific molecules are unknown. Therefore, we assessed the roles of several reactive species, particularly nitric oxide, in pulmonary injury by exposing wild-type mice and seven groups of genetically altered mice to >98% O2 at 1, 3, or 4 atmospheres absolute. Genetica...

Journal: :The Journal of biological chemistry 2017
Shreeta Chakraborty Rupasri Ain

Endothelial nitric-oxide synthase (eNOS) and its bioactive product, nitric oxide (NO), mediate many endothelial cell functions, including angiogenesis and vascular permeability. For example, vascular endothelial growth factor (VEGF)-mediated angiogenesis is inhibited upon reduction of NO bioactivity both in vitro and in vivo Moreover, genetic disruption or pharmacological inhibition of eNOS att...

Journal: :Cardiovascular research 2010
MaryLouisa Holton Tamer M A Mohamed Delvac Oceandy Weiguang Wang Santiago Lamas Michael Emerson Ludwig Neyses Angel L Armesilla

AIMS Nitric oxide (NO) plays a pivotal role in the regulation of cardiovascular physiology. Endothelial NO is mainly produced by the endothelial nitric oxide synthase (eNOS) enzyme. eNOS enzymatic activity is regulated at several levels, including Ca(2+)/calmodulin binding and the interaction of eNOS with associated proteins. There is emerging evidence indicating a role for the plasma membrane ...

Objective(s): Reperfusion of ischaemic myocardium results in reduced nitric oxide (NO) biosynthesis by endothelial nitric oxide synthase (eNOS) leading to endothelial dysfunction and subsequent tissue damage. Impaired NO biosynthesis may be partly due to increased levels of asymmetrical dimethylarginine (ADMA), an endogenous inhibitor of eNOS. As dimethylarginine dimet...

Journal: :American journal of physiology. Cell physiology 2003
Yong Chool Boo Hanjoong Jo

Vascular endothelial cells are directly and continuously exposed to fluid shear stress generated by blood flow. Shear stress regulates endothelial structure and function by controlling expression of mechanosensitive genes and production of vasoactive factors such as nitric oxide (NO). Though it is well known that shear stress stimulates NO production from endothelial nitric oxide synthase (eNOS...

Journal: :Trends in cardiovascular medicine 2008
Masato Tsutsui Sei Nakata Hiroaki Shimokawa Yutaka Otsuji Nobuyuki Yanagihara

Myocardial infarction (MI) is caused by coronary atherosclerosis and/or arteriosclerosis. Because endothelial nitric oxide synthase (eNOS) exerts powerful anti-atherosclerotic/anti-arteriosclerotic effects, it is speculated that blockade of eNOS activity might result in MI. However, neither genetic disruption of eNOS nor pharmacologic inhibition of eNOS activity induces MI in animals. On the ot...

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