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AP39,一种线粒体靶向硫化氢供体,在体外氧化应激下的肾上皮细胞和体内急性肾损伤中发挥保护作用。

AP39, A Mitochondrially Targeted Hydrogen Sulfide Donor, Exerts Protective Effects in Renal Epithelial Cells Subjected to Oxidative Stress in Vitro and in Acute Renal Injury in Vivo.

作者信息

Ahmad Akbar, Olah Gabor, Szczesny Bartosz, Wood Mark E, Whiteman Matthew, Szabo Csaba

机构信息

*Department of Anesthesiology, The University of Texas Medical Branch †Shriners Hospital for Children, Galveston, Texas ‡Department of Biosciences, College of Life and Environmental Science, University of Exeter §University of Exeter Medical School, St. Luke's Campus, Exeter, England.

出版信息

Shock. 2016 Jan;45(1):88-97. doi: 10.1097/SHK.0000000000000478.

Abstract

This study evaluated the effects of AP39 [(10-oxo-10-(4-(3-thioxo-3H-1,2-dithiol-5yl) phenoxy)decyl) triphenyl phosphonium bromide], a mitochondrially targeted donor of hydrogen sulfide (H2S) in an in vitro model of hypoxia/oxidative stress injury in NRK-49F rat kidney epithelial cells (NRK cells) and in a rat model of renal ischemia-reperfusion injury. Renal oxidative stress was induced by the addition of glucose oxidase, which generates hydrogen peroxide in the culture medium at a constant rate. Glucose oxidase (GOx)-induced oxidative stress led to mitochondrial dysfunction, decreased intracellular ATP content, and, at higher concentrations, increased intracellular oxidant formation (estimated by the fluorescent probe 2, 7-dichlorofluorescein, DCF) and promoted necrosis (estimated by the measurement of lactate dehydrogenase release into the medium) of the NRK cells in vitro. Pretreatment with AP39 (30-300 nM) exerted a concentration-dependent protective effect against all of the above effects of GOx. Most of the effects of AP39 followed a bell-shaped concentration-response curve; at the highest concentration of GOx tested, AP39 was no longer able to afford cytoprotective effects. Rats subjected to renal ischemia/reperfusion responded with a marked increase (over four-fold over sham control baseline) blood urea nitrogen and creatinine levels in blood, indicative of significant renal damage. This was associated with increased neutrophil infiltration into the kidneys (assessed by the myeloperoxidase assay in kidney homogenates), increased oxidative stress (assessed by the malondialdehyde assay in kidney homogenates), and an increase in plasma levels of IL-12. Pretreatment with AP39 (0.1, 0.2, and 0.3 mg/kg) provided a dose-dependent protection against these pathophysiological alterations; the most pronounced protective effect was observed at the 0.3 mg/kg dose of the H2S donor; nevertheless, AP39 failed to achieve a complete normalization of any of the injury markers measured. The partial protective effects of AP39 correlated with a partial improvement of kidney histological scores and reduced TUNEL staining (an indicator of DNA damage and apoptosis). In summary, the mitochondria-targeted H2S donor AP39 exerted dose-dependent protective effects against renal epithelial cell injury in vitro and renal ischemia-reperfusion injury in vivo. We hypothesize that the beneficial actions of AP39 are related to the reduction of cellular oxidative stress, and subsequent attenuation of various positive feed-forward cycles of inflammatory and oxidative processes.

摘要

本研究评估了AP39[(10-氧代-10-(4-(3-硫代-3H-1,2-二硫醇-5-基)苯氧基)癸基)三苯基溴化鏻]的作用,它是一种靶向线粒体的硫化氢(H2S)供体,用于NRK-49F大鼠肾上皮细胞(NRK细胞)缺氧/氧化应激损伤的体外模型以及肾缺血-再灌注损伤的大鼠模型。通过添加葡萄糖氧化酶诱导肾脏氧化应激,葡萄糖氧化酶以恒定速率在培养基中产生过氧化氢。葡萄糖氧化酶(GOx)诱导的氧化应激导致线粒体功能障碍、细胞内ATP含量降低,且在较高浓度时,增加细胞内氧化剂生成(通过荧光探针2,7-二氯荧光素,DCF估算),并促进体外NRK细胞坏死(通过测量释放到培养基中的乳酸脱氢酶估算)。用AP39(30 - 300 nM)预处理对GOx的上述所有作用均产生浓度依赖性保护作用。AP39的大多数作用遵循钟形浓度-反应曲线;在测试的最高浓度GOx下,AP39不再能够提供细胞保护作用。遭受肾缺血/再灌注的大鼠血液中尿素氮和肌酐水平显著升高(比假手术对照基线高出四倍多),表明肾脏有明显损伤。这与肾脏中性粒细胞浸润增加(通过肾脏匀浆中的髓过氧化物酶测定评估)、氧化应激增加(通过肾脏匀浆中的丙二醛测定评估)以及血浆IL-12水平升高有关。用AP39(0.1、0.2和0.3 mg/kg)预处理对这些病理生理改变提供了剂量依赖性保护;在0.3 mg/kg剂量的H2S供体时观察到最显著的保护作用;然而,AP39未能使任何测量的损伤标志物完全恢复正常。AP39的部分保护作用与肾脏组织学评分的部分改善以及TUNEL染色减少(DNA损伤和凋亡的指标)相关。总之,靶向线粒体的H2S供体AP39对体外肾上皮细胞损伤和体内肾缺血-再灌注损伤发挥了剂量依赖性保护作用。我们推测AP39的有益作用与细胞氧化应激的降低以及随后炎症和氧化过程各种正反馈循环的减弱有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42e9/4684477/a30014be4996/nihms719083f1.jpg

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