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贝扎贝特通过维持肺上皮细胞中线粒体动力学平衡来减轻急性肺损伤。

Bezafibrate attenuates acute lung injury by preserving mitochondrial dynamics equilibrium in pulmonary epithelial cells.

机构信息

Department of Pharmacy, Renmin Hospital of Wuhan University, Wuhan, Hubei Province 430060, PR China.

Department of Geriatric Medicine, Chongqing Traditional Chinese Medicine Hospital, 6 Panxi Qizhi Road, Jiangbei District, Chongqing City 400021, PR China.

出版信息

Int Immunopharmacol. 2023 Oct;123:110751. doi: 10.1016/j.intimp.2023.110751. Epub 2023 Aug 9.

DOI:10.1016/j.intimp.2023.110751
PMID:37567013
Abstract

Acute lung injury (ALI) serves as a common life-threatening clinical syndrome with high mortality rates, which is characterized by disturbed mitochondrial dynamics in pulmonary epithelial barrier. Peroxisome proliferator-activated receptor-γ (PPAR-γ) is one of the critical nuclear receptors, exerting important roles in preserving mitochondrial dynamics equilibrium. Previous studies have suggested that bezafibrate (BEZ), a PPAR-γ agonist, could improve obesity and insulin resistance. In the present study, we explored whether bezafibrate could attenuate lipopolysaccharide (LPS)-induced ALI in vivo and in vitro. Using C57BL/6 mice exposed to LPS, we observed that BEZ pretreatment (100 mg/kg) for 7 days decreased lung pathologic injury, reduced oxidative stress, suppressed inflammation and apoptosis, accompanied by shifting the dynamic course of mitochondria from fission into fusion. Meanwhile, we observed that BEZ could reverse the inhibition of PPAR-γ in lung tissues from LPS-treated mice. In vitro experiments also disclosed that BEZ could improve cell viability in primary pulmonary epithelial cells in a concentration-dependent manner. And BEZ (80 μM) treatment could not only inhibit oxidative stress but also preserve mitochondrial dynamics equilibrium in primary pulmonary epithelial cells. However, PPAR-γ knockdown partially abolished BEZ-mediated antioxidation and completely offset its regulatory effects on mitochondrial dynamics in primary pulmonary epithelial cells. In PPAR-γ-deficient mice, BEZ lost its pulmonary protection including anti-inflammatory and antioxidative effects in mice with ALI. Taken together, BEZ could attenuate ALI by preserving mitochondrial dynamics equilibrium in pulmonary epithelial cells in a PPAR-γ-dependent manner.

摘要

急性肺损伤(ALI)是一种常见的致命性临床综合征,死亡率较高,其特征是肺上皮屏障中线粒体动力学紊乱。过氧化物酶体增殖物激活受体-γ(PPAR-γ)是一种关键的核受体,在维持线粒体动力学平衡方面发挥着重要作用。先前的研究表明,PPAR-γ激动剂苯扎贝特(BEZ)可改善肥胖和胰岛素抵抗。在本研究中,我们探讨了 BEZ 是否可减轻体内和体外脂多糖(LPS)诱导的 ALI。使用 LPS 暴露的 C57BL/6 小鼠,我们观察到 BEZ 预处理(100mg/kg)7 天可降低肺病理损伤,减少氧化应激,抑制炎症和细胞凋亡,并使线粒体的动态过程从分裂转变为融合。同时,我们观察到 BEZ 可逆转 LPS 处理的小鼠肺组织中 PPAR-γ 的抑制。体外实验还表明,BEZ 可浓度依赖性地提高原代肺上皮细胞的细胞活力。BEZ(80μM)处理不仅可抑制氧化应激,还可维持原代肺上皮细胞中线粒体动力学平衡。然而,PPAR-γ 敲低部分消除了 BEZ 介导的抗氧化作用,并完全抵消了其对原代肺上皮细胞中线粒体动力学的调节作用。在 PPAR-γ 缺陷型小鼠中,BEZ 在 ALI 小鼠中丧失了其肺保护作用,包括抗炎和抗氧化作用。总之,BEZ 可通过依赖 PPAR-γ 的方式维持肺上皮细胞中线粒体动力学平衡来减轻 ALI。

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