Involvement of NADPH oxidases in the Na/K‑ATPase/Src/ROS oxidant amplification loop in renal fibrosis.

IF 3.4 3区 医学 Q2 MEDICINE, RESEARCH & EXPERIMENTAL Molecular medicine reports Pub Date : 2023-09-01 DOI:10.3892/mmr.2023.13048
Huimin Zhang, Fangfang Lai, Xi Cheng, Yu Wang
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引用次数: 1

Abstract

The Na/K‑ATPase/Src complex is reportedly able to affect reactive oxygen species (ROS) amplification. However, it has remained elusive whether NADPH oxidases (NOXs) are involved in this oxidant amplification loop in renal fibrosis. To test this hypothesis, interactions between oxidative features and Na/K‑ATPase/Src activation were examined in a mouse model of unilateral urethral obstruction (UUO)‑induced experimental renal fibrosis. Both 1‑tert‑butyl‑3‑(4‑chlorophenyl)‑1H‑pyrazolo[3,4‑d]pyrimidin‑4‑amine (PP2) and apocynin significantly attenuated the development of UUO‑induced renal fibrosis. Apocynin administration attenuated the expression of NOXs and oxidative markers (e.g., nuclear factor erythroid 2‑related factor 2, heme oxygenase‑1,4‑hydroxynonenal and 3‑nitrotyrosine); it also partially restored Na/K‑ATPase expression and inhibited the activation of the Src/ERK cascade. Furthermore, administration of PP2 after UUO induction partially reversed the upregulation of NOX2, NOX4 and oxidative markers, while inhibiting the activation of the Src/ERK cascade. Complementary experiments in LLC‑PK1 cells corroborated the in vivo observations. Inhibition of NOX2 by RNA interference attenuated ouabain‑induced oxidative stress, ERK activation and E‑cadherin downregulation. Thus, it is indicated that NOXs are major contributors to ROS production in the Na/K‑ATPase/Src/ROS oxidative amplification loop, which is involved in renal fibrosis. The disruption of this vicious feed‑forward loop between NOXs/ROS and redox‑regulated Na/K‑ATPase/Src may have therapeutic applicability for renal fibrosis disorders.

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肾纤维化中NADPH氧化酶参与Na/K - atp酶/Src/ROS氧化扩增环
据报道,Na/K - atp酶/Src复合物能够影响活性氧(ROS)扩增。然而,在肾纤维化中,NADPH氧化酶(NOXs)是否参与了这种氧化剂扩增环尚不清楚。为了验证这一假设,在单侧尿道梗阻(UUO)诱导的实验性肾纤维化小鼠模型中,研究了氧化特征与Na/K - atp酶/Src激活之间的相互作用。1 -叔丁基- 3 -(4 -氯苯基)- 1H -吡唑罗[3,4 - d] -嘧啶- 4 -胺(PP2)和罗布麻素均可显著减轻UUO诱导的肾纤维化的发展。罗布麻素降低了NOXs和氧化标志物(如核因子红系2相关因子2、血红素加氧酶1、4 -羟基壬烯醛和3 -硝基酪氨酸)的表达;它还能部分恢复Na/K - atp酶的表达,抑制Src/ERK级联的激活。此外,UUO诱导后给予PP2可部分逆转NOX2、NOX4和氧化标志物的上调,同时抑制Src/ERK级联的激活。在LLC‑PK1细胞中的补充实验证实了体内观察结果。RNA干扰对NOX2的抑制可减弱哇巴因诱导的氧化应激、ERK激活和E -钙粘蛋白下调。因此,研究表明NOXs是参与肾纤维化的Na/K - ATPase/Src/ROS氧化扩增环中ROS产生的主要贡献者。NOXs/ROS与氧化还原调节的Na/K - ATPase/Src之间这种恶性前传循环的破坏可能具有治疗肾纤维化疾病的适用性。
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来源期刊
Molecular medicine reports
Molecular medicine reports 医学-病理学
CiteScore
7.60
自引率
0.00%
发文量
321
审稿时长
1.5 months
期刊介绍: Molecular Medicine Reports is a monthly, peer-reviewed journal available in print and online, that includes studies devoted to molecular medicine, underscoring aspects including pharmacology, pathology, genetics, neurosciences, infectious diseases, molecular cardiology and molecular surgery. In vitro and in vivo studies of experimental model systems pertaining to the mechanisms of a variety of diseases offer researchers the necessary tools and knowledge with which to aid the diagnosis and treatment of human diseases.
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