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Sex‐specific alterations in NOS regulation of vascular function in aorta and mesenteric arteries from spontaneously hypertensive rats compared to Wistar Kyoto rats

机译:与Wistar Kyoto大鼠相比自发性高血压大鼠的NOS调节主动脉和肠系膜动脉血管功能的性别特异性变化

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摘要

The present study tested the hypothesis that spontaneously hypertensive rats (SHR) have impaired nitric oxide synthase (NOS)‐mediated regulation of vascular function versus Wistar‐Kyoto rats (WKY). Aorta and small mesenteric arteries were studied from male and female SHR (M SHR and F SHR) and WKY (M WKY and F WKY). Phenylephrine (PE)‐induced vasoconstriction was greater in aorta of M SHR versus all others (P < 0.05); there were neither sex nor strain differences in PE contraction in mesenteric arteries. The NOS inhibitor l‐Nitro‐Arginine Methyl Ester (l‐NAME) increased PE‐induced vasoconstriction in all rats, although the increase was the least in male SHR (P < 0.05), revealing a blunted vasoconstrictor buffering capacity of NOS. l‐NAME increased sensitivity to PE‐induced constriction only in mesenteric arteries of SHR, although, the maximal percent increase in contraction was comparable among groups. ACh‐induced relaxation was also less in aorta from M SHR versus all others (P < 0.05). ACh relaxation was comparable among groups in mesenteric arteries, although SHR exhibited a greater NOS component to ACh‐induced relaxation than WKY. To gain mechanistic insight into sex and strain differences in vascular function, NOS activity and NOS3 protein expression were measured. Aortic NOS activity was comparable between groups and M SHR had greater NOS3 expression than M WKY. In contrast, although vascular function was largely maintained in mesenteric arteries of SHR, NOS activity was less in SHR versus WKY. In conclusion, M SHR exhibit a decrease in NOS regulation of vascular function compared to F SHR and WKY, although this is not mediated by decreases in NOS activity and/or expression.
机译:本研究检验了以下假设:与Wistar-Kyoto大鼠(WKY)相比,自发性高血压大鼠(SHR)的一氧化氮合酶(NOS)介导的血管功能调节受损。研究了男性和女性SHR(M SHR和F SHR)和WKY(M WKY和F WKY)的主动脉和小肠系膜动脉。 M SHR的主动脉中苯肾上腺素(PE)引起的血管收缩比其他所有患者更大(P <0.05);肠系膜动脉PE收缩既无性别差异也无应变差异。 NOS抑制剂l-硝基精氨酸甲酯(l-NAME)在所有大鼠中均增加了PE引起的血管收缩,尽管雄性SHR的增幅最小(P <0.05),表明NOS的血管收缩剂缓冲能力减弱。 l-NAME仅在SHR的肠系膜动脉中增加了对PE引起的收缩的敏感性,尽管最大的收缩百分率在各组之间相当。 M SHR的主动脉中,ACh引起的松弛也少于其他所有因素(P <0.05)。肠系膜动脉组中,ACh松弛在各组之间具有可比性,尽管SHR对ACh引起的松弛表现出比WKY更大的NOS成分。为了深入了解性别和菌株在血管功能方面的差异,对NOS活性和NOS3蛋白表达进行了测量。各组之间的主动脉NOS活性相当,并且M SHR比M WKY具有更高的NOS3表达。相反,尽管在SHR的肠系膜动脉中大部分维持了血管功能,但SHR相对于WKY的NOS活性较低。总之,与F SHR和WKY相比,M SHR表现出NOS调节的血管功能下降,尽管这不是由NOS活性和/或表达下降所介导的。

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