Oxidative Stress in Hypertensive Patients Induces an Increased Contractility in Vein Grafts Independent of Endothelial Function
Author(s) -
Claudio Joo Turoni,
Rodrigo O Marañón,
María Sofía Karbiner,
Juan Muntaner,
Víctor Proto,
María Peral de Bruno
Publication year - 2011
Publication title -
international journal of hypertension
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.744
H-Index - 37
eISSN - 2090-0392
pISSN - 2090-0384
DOI - 10.4061/2011/902129
Subject(s) - medicine , contractility , oxidative stress , function (biology) , cardiology , vein , microbiology and biotechnology , biology
Objective . To evaluate the impact of oxidative stress on vascular reactivity to vasoconstrictors and on nitric oxide (NO) bioavailability in saphenous vein (SV) graft with endothelial dysfunction from hypertensive patients (HT). Methods . Endothelial function, vascular reactivity, oxidative state, nitrites and NO release were studied in isolated SV rings from HT and normotensive patients (NT). Only rings with endothelial dysfunction were used. Results . HT rings presented a hyperreactivity to vasoconstrictors that was reverted by diphenylene iodonium (DPI). In NT, no effect of DPI was obtained, but N ω -nitro- L -arginine methyl ester (L-NAME) increased the contractile response. NO was present in SV rings without endothelial function. Nitrites were higher in NT than in HT (1066.1 ± 86.3 pmol/mg; n = 11 versus 487.8 ± 51.6; n = 23; P < 0.01) and inhibited by nNOS inhibitor. L-arginine reversed this effect. Antioxidant agents increased nitrites and NO contents only in HT. The anti-nNOS-stained area by immunohistochemistry was higher in NT than HT. HT showed an elevation of oxidative state. Conclusions . Extraendothelial NO counter-regulates contractility in SV. However, this action could be altered in hypertensive situations by an increased oxidative stress or a decreased ability of nNOS to produce NO. Further studies should be performed to evaluate the implication of these results in graft patency rates.
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