Oxidative stress and altered endothelial cell function in preeclampsia.

S T Davidge
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引用次数: 165

Abstract

Evidence continues to accumulate that oxidative stress is a mediator of endothelial cell dysfunction and thus contributes to the cardiovascular complications of preeclampsia. The mechanisms for the interaction of oxidative stress and endothelial cell function have not been well defined. This review explores potential vasoactive pathways that may be affected by oxidative stress and have been reported to be altered in women with preeclampsia. In pathologic conditions of oxidative stress, increased production of superoxide peroxide anions and nitric oxide has been recognized to inactivate the nitric oxide as a vasorelaxant as well as produce peroxynitrite, a potent oxidant. Increase prostaglandin H (PGH) synthase activity resulting in vasoconstriction predominates in models of oxidative stress. Peroxynitrite increases PGH synthase activity in vitro, providing a potential, but as yet untested, link between oxidative stress, nitric oxide, and PGH synthase pathway, leading to reduced relaxation and increased constriction in the vasculature of women with preeclampsia. Other vasoconstrictors (such as isoprostanes and endothelin) that may be interrelated with oxidative stress and altered endothelial cell function in preeclampsia are also discussed.

氧化应激与子痫前期内皮细胞功能改变。
越来越多的证据表明,氧化应激是内皮细胞功能障碍的中介,因此有助于子痫前期的心血管并发症。氧化应激与内皮细胞功能相互作用的机制尚未明确。这篇综述探讨了可能受氧化应激影响的潜在血管活性途径,并已报道在子痫前期妇女中发生改变。在氧化应激的病理条件下,超氧过氧化物阴离子和一氧化氮的产生增加已被认为可以使作为血管松弛剂的一氧化氮失活,并产生过氧亚硝酸盐,一种强效氧化剂。增加前列腺素H (PGH)合成酶活性导致血管收缩在氧化应激模型中占主导地位。过氧亚硝酸盐增加体外PGH合成酶活性,提供了氧化应激、一氧化氮和PGH合成酶途径之间的潜在联系,但尚未得到验证,导致子痫前期女性血管松弛减少和收缩增加。其他血管收缩剂(如异前列腺素和内皮素)可能与氧化应激和改变内皮细胞功能在子痫前期也进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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