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首页> 外文期刊>Biochemistry and Cell Biology >Cadmium attenuates bradykinin-driven nitric oxide production by interplaying with the localization pattern of endothelial nitric oxide synthase.
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Cadmium attenuates bradykinin-driven nitric oxide production by interplaying with the localization pattern of endothelial nitric oxide synthase.

机译:镉通过与内皮型一氧化氮合酶的定位模式相互作用而减弱了缓激肽驱动的一氧化氮的产生。

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摘要

Cadmium, a ubiquitous heavy metal, interferes with endothelial functions and angiogenesis. Bradykinin is a Ca-mobilizing soluble peptide that acts via nitric oxide to promote vasodilation and capillary permeability. The objective of the present study was to explore the Cd implications in bradykinin-dependent endothelial functions. An egg yolk angiogenesis model was employed to evaluate the effect of Cd on bradykinin-induced angiogenesis. The results demonstrate that 100 nmol/L Cd attenuated bradykinin-dependent angiogenesis. The results of the in vitro wound healing and tube formation assays by using EAhy 926, a transformed endothelial cell line, suggest that Cd blocked bradykinin-mediated endothelial migration and tube formation by 38% and 67%, respectively, while nitric oxide supplementation could reverse the effect of Cd on bradykinin-induced endothelial migration by 94%. The detection of nitric oxide by using a DAF-2DA fluorescent probe, Griess assay, and ultrasensitive electrode suggests that Cd blocked bradykinin-induced nitric oxide production. Fluorescence imaging of eNOS-GFP transfected endothelial cells, immunofluorescence, and Western blot studies of Cd and bradykinin-treated cells show that Cd interfered with the localization pattern of eNOS, which possibly attenuates nitric oxide production in part. Additionally, Ca imaging of Cd- and bradykinin-treated cells suggests that Cd blocked bradykinin-dependent Ca influx into the cells, thus partially blocking Ca-dependent nitric oxide production in endothelial cells. The results of this study conclude that Cd blunted the effect of bradykinin by interfering with the Ca-associated NOS activity specifically by impeding subcellular trafficking of eNOS.
机译:镉是一种普遍存在的重金属,会干扰内皮功能和血管生成。缓激肽是一种钙动员的可溶性肽,可通过一氧化氮促进血管舒张和毛细血管通透性。本研究的目的是探讨缓激肽依赖性内皮功能中Cd的影响。蛋黄血管生成模型用于评估镉对缓激肽诱导的血管生成的影响。结果表明100 nmol / L Cd减弱了缓激肽依赖性血管生成。通过使用转化的内皮细胞系EAhy 926进行的体外伤口愈合和管形成试验的结果表明,Cd分别抑制缓激肽介导的内皮迁移和管形成38%和67%,而一氧化氮的补充可以逆转镉对缓激肽诱导的内皮迁移的影响达94%。通过使用DAF-2DA荧光探针,Griess分析和超灵敏电极检测一氧化氮,表明Cd阻滞了缓激肽诱导的一氧化氮生成。 eNOS-GFP转染的内皮细胞的荧光成像,免疫荧光以及Cd和缓激肽处理的细胞的Western印迹研究表明,Cd干扰eNOS的定位模式,这可能会部分减弱一氧化氮的产生。此外,Cd和缓激肽处理过的细胞的Ca成像表明,Cd阻止了缓激肽依赖性Ca流入细胞,从而部分阻断了内皮细胞中Ca依赖性一氧化氮的产生。这项研究的结果得出结论,镉通过干扰与Ca相关的NOS活性,特别是通过阻止eNOS的亚细胞贩运,削弱了缓激肽的作用。

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