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3-溴丙酮酸通过抑制单侧输尿管梗阻小鼠模型中的有氧糖酵解来减少肾脏纤维化和成纤维细胞活化。

3-Bromopyruvate decreased kidney fibrosis and fibroblast activation by suppressing aerobic glycolysis in unilateral ureteral obstruction mice model.

机构信息

Department of Radiology, The First Affiliated Hospital of Anhui Medical University, Hefei City 230022, Anhui Province, China.

The First Clinic College, Anhui Medical University, Hefei City 230032, Anhui Province, China.

出版信息

Life Sci. 2021 May 1;272:119206. doi: 10.1016/j.lfs.2021.119206. Epub 2021 Feb 9.

Abstract

AIMS

Enhanced aerobic glycolysis is a motivation of fibroblast-myofibroblast transdifferentiation (FMT), leading to kidney fibrosis. 3-Bromopyruvate (3-BrPA) is a glycolysis inhibitor and has fibrosis-protected effect in liver. This study aims to explore the effects of 3-BrPA on aerobic glycolysis and kidney fibrosis in a unilateral ureteral obstruction (UUO) mice model and transforming growth factor-β1(TGF-β1)-stimulated normal rat kidney fibroblast (NRK49F) cell model in vitro.

MAIN METHODS

In vivo UUO mouse model and in vitro TGF-β1 stimulated cell model were built. Immunohistochemical staining, Western blots, Real-time PCR and fluorescence microscopy were employed to detect extra cellular matrix (ECM) synthesis, fibroblast activation, aerobic glycolysis switch and related signaling pathways.

KEY FINDINGS

HE and Masson's Trichrome staining showed that 3-BrPA substantially suppressed kidney injury and interstitial collagen production. 3-BrPA also attenuated ECM accumulation in a dose-dependent manner, as shown by immunohistochemistry staining, RT-PCR and western blot. Furthermore, 3-BrPA inhibited FMT, as indicated by α-SMA and PCNA immunofluorescence double staining. Additionally, the results of MTT assay indicated 3-BrPA prevented TGF-β1 induced fibroblasts proliferation in a time- and dose-dependent manner. Mechanistically, molecular docking results showed that 3-BrPA effectively decreased the aerobic glycolysis related enzymes Hexokinase-2 (HK-2), Lactate dehydrogenase A (LDHA) and Pyruvate kinase isozymes M2 (PKM-2), as well as inhibited IL-1 receptor-associated kinase 4 (IRAK4)/MYC protein levels.

SIGNIFICANCE

Our study highlighted that 3-BrPA is a potential reno-protective agent in kidney fibrosis through the inhibition of fibroblasts aerobic glycolysis might via IRAK4/MYC signal pathways.

摘要

目的

增强的有氧糖酵解是成纤维细胞-肌成纤维细胞转分化(FMT)的动力,导致肾脏纤维化。3-溴丙酮酸(3-BrPA)是一种糖酵解抑制剂,在肝脏中具有抗纤维化作用。本研究旨在探讨 3-BrPA 在单侧输尿管梗阻(UUO)小鼠模型和体外转化生长因子-β1(TGF-β1)刺激正常大鼠肾成纤维细胞(NRK49F)细胞模型中对有氧糖酵解和肾脏纤维化的影响。

主要方法

建立体内 UUO 小鼠模型和体外 TGF-β1 刺激细胞模型。采用免疫组织化学染色、Western blot、实时 PCR 和荧光显微镜检测细胞外基质(ECM)合成、成纤维细胞激活、有氧糖酵解转换及相关信号通路。

主要发现

HE 和 Masson 三色染色显示 3-BrPA 显著抑制肾脏损伤和间质胶原产生。3-BrPA 还呈剂量依赖性方式减弱 ECM 积累,通过免疫组织化学染色、RT-PCR 和 Western blot 显示。此外,3-BrPA 抑制 FMT,α-SMA 和 PCNA 免疫荧光双重染色显示。此外,MTT 检测结果表明 3-BrPA 以时间和剂量依赖的方式阻止 TGF-β1 诱导的成纤维细胞增殖。机制上,分子对接结果表明 3-BrPA 有效降低了有氧糖酵解相关酶己糖激酶-2(HK-2)、乳酸脱氢酶 A(LDHA)和丙酮酸激酶同工酶 M2(PKM-2)的活性,以及抑制白细胞介素-1 受体相关激酶 4(IRAK4)/MYC 蛋白水平。

意义

本研究表明,3-BrPA 通过抑制成纤维细胞有氧糖酵解可能通过 IRAK4/MYC 信号通路,是肾脏纤维化的一种潜在肾保护剂。

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