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K Chwalisz

Publications and source records attributed to K Chwalisz.

97 records · Page 6Linked to original sources

Relaxation kinetics of the aorta in N omega-nitro-L-arginine methyl ester-treated pregnant rats.

OBJECTIVE: To test the hypothesis that vascular relaxation kinetics are prolonged in pregnant rats treated chronically with N omega-nitro-L-arginine methyl ester (L-NAME). METHODS: Timed pregnant rats (on day 15 of a 22-day gestation) were implanted with infusion pumps containing vehicle (controls) or L-NAME (50 mg/d). L-NAME pumps were retained until day 22 (group 1), or removed on day 20 (group 2). All rats were killed at term. Aortic rings were mounted in organ chambers containing physiologic salt solution (PSS) for isometric tension recording, contracted with high-K+ PSS (60 mM), and allowed to relax in normal-K+ PSS. Relaxation kinetics were quantified as time for 50% and 80% relaxation. After contraction with phenylephrine, responses to cumulative concentrations of methacholine were studied in the absence and presence of L-arginine (L-Arg) (10(-3) M). RESULTS: Responses to methacholine were inhibited completely in group 1 and partially in group 2 (P < .05). The inhibition in both groups was reversed by L-Arg. The rate of relaxation was significantly slower in groups 1 and 2 (P < .05) as compared with controls. Mechanical removal of the endothelium caused prolongation of relaxation in controls and group 2 (P < .05), but not in group 1. Preincubation of aortic rings from untreated controls with L-NAME (in vitro, 10(-4) M) did not affect relaxation. CONCLUSION: The endothelium modulates the rate of vascular relaxation by a factor other than nitric oxide. N omega-nitro-L-arginine methyl ester (L-NAME) prolongs vasorelaxation by endothelium-dependent and -independent mechanisms. Prolongation of vascular relaxation kinetics may be a mechanism to elevate blood pressure and peripheral vascular resistance in preeclampsia.

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Relaxation kinetics of rat aorta during pregnancy.

OBJECTIVE: To examine the hypothesis that kinetics of vasorelaxation are altered during pregnancy. METHODS: Rings of aorta from rats at different stages of pregnancy (early, late, and term) and from nonpregnant female rats were precontracted with high-K+ and then allowed to relax in normal-K+ physiologic saline solution. The time to reach 50% and 80% relaxation were determined in the absence or presence of a cyclooxygenase inhibitor (indomethacin) and a nitric oxide synthase inhibitor (N omega-nitro-L-arginine methyl ester) or after removal of the endothelium. RESULTS: The aortic relaxation was progressively faster in later stages of gestation. N omega-nitro-L-arginine methyl ester and indomethacin had no significant effect whereas removal of the endothelium caused a slowing of relaxation in all the groups. Even in the presence of N omega-nitro-L-arginine methyl ester and indomethacin or after de-endothelization, the relaxation remained faster at term as compared with the other groups. CONCLUSION: Aortic relaxation is faster in the presence of endothelium. The effect of endothelium on relaxation is independent of nitric oxide synthase or cyclooxygenase systems. Progression of gestation is associated with acceleration of aortic relaxation, which cannot be totally ascribed to an endothelial factor and may involve a change intrinsic to the vascular smooth muscle. Faster relaxation kinetics of the vasculature during pregnancy may be a mechanism to decrease peripheral vascular resistance.

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