Literature DB >> 16685209

Synergistic effect of mechanical stretch and angiotensin II on superoxide production via NADPH oxidase in vascular smooth muscle cells.

Hirofumi Hitomi1, Toshiki Fukui, Kumiko Moriwaki, Keisuke Matsubara, Guang-Ping Sun, Matlubur Rahman, Akira Nishiyama, Hideyasu Kiyomoto, Shoji Kimura, Koji Ohmori, Youichi Abe, Masakazu Kohno.   

Abstract

OBJECTIVE: Mechanical forces and angiotensin II influence the structure and function of vascular cells, and play an important role in reactive oxygen species production. In this study, we examined the effects of mechanical stretch and angiotensin II on the expression of p22-phox and Nox-1, essential membrane components of NADPH oxidase, and superoxide production in rat vascular smooth muscle cells (VSMCs). METHODS AND
RESULTS: Neither a stretch force nor angiotensin II alone altered p22-phox and Nox-1 expression in VSMCs. Combined stimulation markedly increased p22-phox and Nox-1 mRNA, however, which was associated with increased NADPH oxidase activity, superoxide production and total 8-iso-prostaglandin F2alpha concentration. The increases in p22-phox mRNA levels induced by a stretch force in combination with angiotensin II were prevented by treatment with an angiotensin type I (AT1) receptor antagonist, RNH-6270 (100 nmol/l). Protein expression of the AT1 receptor was upregulated by a stretch force.
CONCLUSIONS: These data indicate that mechanical stretch and angiotensin II synergistically increase NADPH oxidase expression in VSMCs, and suggest that part of this mechanism is mediated through an upregulation of the AT1 receptor induced by mechanical stretch. The combined effects of mechanical strain and angiotensin II might promote vascular damage through the production of superoxide in a hypertensive state.

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Year:  2006        PMID: 16685209     DOI: 10.1097/01.hjh.0000226199.51805.88

Source DB:  PubMed          Journal:  J Hypertens        ISSN: 0263-6352            Impact factor:   4.844


  15 in total

1.  High sodium augments angiotensin II-induced vascular smooth muscle cell proliferation through the ERK 1/2-dependent pathway.

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Review 2.  Biochemistry, physiology, and pathophysiology of NADPH oxidases in the cardiovascular system.

Authors:  Bernard Lassègue; Alejandra San Martín; Kathy K Griendling
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3.  Angiotensin II shifts insulin signaling into vascular remodeling from glucose metabolism in vascular smooth muscle cells.

Authors:  Hirofumi Hitomi; Kumiko Kaifu; Yoshiko Fujita; Tadashi Sofue; Daisuke Nakano; Kumiko Moriwaki; Taiga Hara; Hideyasu Kiyomoto; Masakazu Kohno; Hiroyuki Kobori; Akira Nishiyama
Journal:  Am J Hypertens       Date:  2011-06-30       Impact factor: 2.689

Review 4.  Role of the renin-angiotensin system in the pathogenesis of intimal hyperplasia: therapeutic potential for prevention of vein graft failure?

Authors:  Michael J Osgood; David G Harrison; Kevin W Sexton; Kyle M Hocking; Igor V Voskresensky; Padmini Komalavilas; Joyce Cheung-Flynn; Raul J Guzman; Colleen M Brophy
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5.  Angiotensin and systems thinking: wrapping your mind around the big picture.

Authors:  Gary Robert Smith
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6.  The vascular renin-angiotensin system contributes to blunted vasodilation induced by transient high pressure in human adipose microvessels.

Authors:  Matthew J Durand; Shane A Phillips; Michael E Widlansky; Mary F Otterson; David D Gutterman
Journal:  Am J Physiol Heart Circ Physiol       Date:  2014-07-01       Impact factor: 4.733

7.  Nitric oxide alterations following acute ductal constriction in the fetal lamb: a role for superoxide.

Authors:  Jong-Hau Hsu; Peter Oishi; Dean A Wiseman; Yali Hou; Omar Chikovani; Sanjeev Datar; Eniko Sajti; Michael J Johengen; Cynthia Harmon; Stephen M Black; Jeffrey R Fineman
Journal:  Am J Physiol Lung Cell Mol Physiol       Date:  2010-04-02       Impact factor: 5.464

8.  Angiotensin II induces Fat1 expression/activation and vascular smooth muscle cell migration via Nox1-dependent reactive oxygen species generation.

Authors:  T Bruder-Nascimento; P Chinnasamy; D F Riascos-Bernal; S B Cau; G E Callera; R M Touyz; R C Tostes; N E S Sibinga
Journal:  J Mol Cell Cardiol       Date:  2014-01       Impact factor: 5.000

9.  Cyclic stretch stimulates mitochondrial reactive oxygen species and Nox4 signaling in pulmonary artery smooth muscle cells.

Authors:  Stephen Wedgwood; Satyan Lakshminrusimha; Paul T Schumacker; Robin H Steinhorn
Journal:  Am J Physiol Lung Cell Mol Physiol       Date:  2015-05-29       Impact factor: 5.464

Review 10.  Nox family NADPH oxidases in mechano-transduction: mechanisms and consequences.

Authors:  Ralf P Brandes; Norbert Weissmann; Katrin Schröder
Journal:  Antioxid Redox Signal       Date:  2013-07-05       Impact factor: 8.401

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