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首页> 外文期刊>Journal of physiology and pharmacology: an official journal of the Polish Physiological Society >CHANGES IN THE VASOACTIVE EFFECTS OF NITRIC OXIDE, HYDROGEN SULFIDE AND THE STRUCTURE OF THE RAT THORACIC AORTA: THE ROLE OF AGE AND ESSENTIAL HYPERTENSION
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CHANGES IN THE VASOACTIVE EFFECTS OF NITRIC OXIDE, HYDROGEN SULFIDE AND THE STRUCTURE OF THE RAT THORACIC AORTA: THE ROLE OF AGE AND ESSENTIAL HYPERTENSION

机译:一氧化氮,硫化氢和大鼠胸主动脉结构的血管舒张作用的改变:年龄和基本高血压的作用

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Several studies have already confirmed the specific vasomotor effect of hydrogen sulfide (H2S) and its interaction with the nitric oxide (NO) system in normotensive rats, but results in spontaneously hypertensive rats (SHRs) are limited. The aim of this study was to describe the age- and blood pressure-dependent effects of endogenous NO and exogenous Na2S and their interaction in vasomotor responses of the thoracic aorta (TA) in normotensive Wistar rats and SHRs. The systolic blood pressure (sBP), vasoactivity, NO-synthase (NOS) expression and activity, cystathionine gamma-lyase (CSE) expression, and geometry of the isolated TA were evaluated at 4 and 16 weeks of age. Although hypertrophy of the heart was observed in young and adult SHRs, the sBP was increased only in adulthood. The contractile responses were decreased in young as in adult SHRs with the key participation of the endogenous NO system. However, the hypotrophy in the young and the hypertrophy (mainly at the expense of extracellular matrix) in the adult SHRs were found in the TA. While unchanged in young SHRs, in adult SHRs, partially impaired endothelial function was confirmed. Nevertheless, the NO-dependent component of acetylcholine-induced relaxation was higher in both young and adult SHRs. Consistently, even though there was an age-dependent decrease in NOS activity in both strains, NOS activity was higher in both young and adult SHRs compared to age-matched normotensive rats. Application of exogenous Na2S evoked a concentration-dependent dual vasoactive effect of TAs in both strains, regardless of age. Increased sensitivity in favor of vasorelaxant responses of Na2S in prehypertensive SHRs, and an enhanced maximal vasorelaxation in adult SHR was observed. The acute NO inhibition generally increased the relaxant phase of Na2S responses; nevertheless, the development of hypertension potentiated this effect. The TA of the SHRs is endowed with a unique inherent predisposition of vasoactive mechanisms, which serve as compensatory processes during the developed stage of hypertension: the NO component and H2S signaling pathways are implicated. The decreased contractility seems to be a deleterious effect. The increased participation of the H2S system on vasorelaxation after acute NO inhibition could be considered a reserved mechanism in case of endogenous NO deficiency.
机译:数项研究已经证实了正常血压大鼠中硫化氢(H2S)的特定血管舒缩作用及其与一氧化氮(NO)系统的相互作用,但对自发性高血压大鼠(SHRs)的结果是有限的。这项研究的目的是描述血压正常的Wistar大鼠和SHR中内源性NO和外源性Na2S的年龄和血压依赖性作用及其在胸主动脉(TA)血管舒缩反应中的相互作用。在4周和16周龄时评估了收缩压(sBP),血管活性,NO合酶(NOS)的表达和活性,胱硫醚γ-裂合酶(CSE)的表达以及分离的TA的几何形状。尽管在年轻和成年SHR中观察到心脏肥大,但sBP仅在成年期才增加。在内源性NO系统的关键参与下,年轻人和成人SHR的收缩反应均降低。但是,在TA中发现了年轻的SHRs的营养不良和成年SHRs的肥大(主要是细胞外基质的破坏)。尽管在年轻的SHR中没有变化,但在成人的SHR中,证实了部分内皮功能受损。然而,无论是年轻的还是成年的SHR,乙酰胆碱引起的舒张反应的NO依赖性成分都较高。一致地,即使两种品系中的NOS活性均存在年龄依赖性降低,但与年龄匹配的血压正常大鼠相比,年轻和成年SHR中的NOS活性均较高。外源Na2S的使用在两种菌株中均引起了TA的浓度依赖性双重血管活性作用,而与年龄无关。在高血压前期SHR中敏感性增强,支持Na2S的血管舒张反应,并且在成人SHR中观察到最大血管舒张增强。急性NO抑制通常会增加Na2S反应的弛豫相。但是,高血压的发展增强了这种作用。 SHR的TA具有独特的固有血管活性机制倾向,在高血压发展阶段可作为补偿过程:涉及NO成分和H2S信号通路。收缩力下降似乎是有害的。在内源性NO缺乏的情况下,急性NO抑制后H2S系统对血管舒张的参与增加可能被认为是保留的机制。

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