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微塑料通过线粒体活性氧介导的自噬加剧慢性阻塞性肺疾病中的铁死亡。

Microplastics exacerbate ferroptosis via mitochondrial reactive oxygen species-mediated autophagy in chronic obstructive pulmonary disease.

作者信息

Wei Yuan Yuan, Chen Ting Ting, Zhang Da Wei, Zhang Ying, Li Fang, Ding Yi Chuan, Wang Ming Yu, Zhang Ling, Chen Ke Gong, Fei Guang He

机构信息

Department of Respiratory and Critical Care Medicine, First Affiliated Hospital of Anhui Medical University, Hefei, Anhui, China.

Key Laboratory of Respiratory Diseases Research and Medical Transformation of Anhui Province, Hefei, Anhui, P.R. China.

出版信息

Autophagy. 2025 Aug;21(8):1717-1743. doi: 10.1080/15548627.2025.2481126. Epub 2025 Apr 4.

Abstract

Microplastics (MPs) induce mitochondrial dysfunction and iron accumulation, contributing to mitochondrial macroautophagy/autophagy and ferroptosis, which has increased susceptibility to the exacerbation of chronic obstructive pulmonary disease (COPD); however, the underlying mechanism remains unclear. We demonstrated that MPs intensified inflammation in COPD by enhancing autophagy-dependent ferroptosis (ADF) in vitro and in vivo. In the lung tissues of patients with COPD, the concentrations of MPs, especially polystyrene microplastics (PS-MPs), were significantly higher than that of the control group, as detected by pyrolysis gas chromatography mass spectrometry (Py-GCMS), with increased iron accumulation. The exposure to PS-MPs, 2 μm in size, resulted in their being deposited in the lungs of COPD model mice detected by optical in vivo imaging, and observed in bronchial epithelial cells traced by GFP-labeled PS-MPs. There were mitochondrial impairments accompanied by mitochondrial reactive oxygen species (mito-ROS) overproduction and significantly increased levels of lysosome biogenesis and acidification in pDHBE cells with PS-MP stimulation, triggering occurrence of ferritinophagy and enhancing ADF in COPD, which triggered acute exacerbation of COPD (AECOPD). Reestablishing autophagy-dependent ferroptosis via mitochondria-specific ROS scavenging or ferroptosis inhibition alleviated excessive inflammation and ameliorated AECOPD induced by PS-MPs. Collectively, our data initially revealed that MPs exacerbate ferroptosis via mito-ROS-mediated autophagy in COPD, which sheds light on further hazard assessments of MPs on human respiratory health and potential therapeutic agents for patients with COPD. ADF: autophagy-dependent ferroptosis; AECOPD: acute exacerbation of chronic obstructive pulmonary disease; Cchord: static compliance; COPD: chronic obstructive pulmonary disease; CQ: chloroquine; CS: cigarette smoke; DEGs: differentially expressed genes; Fer-1: ferrostatin-1; FEV 0.1: forced expiratory volume in first 100 ms; FVC: forced vital capacity; GSH: glutathione; HE: hematoxylin and eosin; IL1B/IL-1β: interleukin 1 beta; IL6: interleukin 6; MDA: malondialdehyde; Mito-ROS: mitochondrial reactive oxygen species; MMA: methyl methacrylate; MMF: maximal mid-expiratory flow curve; MMP: mitochondrial membrane potential; MOI: multiplicity of infection; MPs: microplastics; MV: minute volume; PA: polyamide; PBS: phosphate-buffered saline; PC: polycarbonate; pDHBE: primary human bronchial epithelial cell from COPD patients; PET: polyethylene terephthalate; PIF: peak inspiratory flow; PLA: polylactic acid; pNHBE: primary normal human bronchial epithelial cell; PS-MPs: polystyrene microplastics; PVA: polyvinyl acetate; PVC: polyvinyl chloride; Py-GCMS: pyrolysis gas chromatography mass spectrometry; SEM: scanning electron microscopy; Te: expiratory times; Ti: inspiratory times; TNF/TNF-α: tumor necrosis factor.

摘要

微塑料(MPs)可诱导线粒体功能障碍和铁蓄积,导致线粒体巨自噬/自噬和铁死亡,从而增加慢性阻塞性肺疾病(COPD)急性加重的易感性;然而,其潜在机制尚不清楚。我们证明,MPs在体外和体内通过增强自噬依赖性铁死亡(ADF)加剧COPD炎症。通过热解气相色谱-质谱联用(Py-GCMS)检测发现,COPD患者肺组织中MPs,尤其是聚苯乙烯微塑料(PS-MPs)的浓度显著高于对照组,且铁蓄积增加。通过光学体内成像检测发现,暴露于2μm大小的PS-MPs会使其沉积在COPD模型小鼠的肺部,通过绿色荧光蛋白标记的PS-MPs追踪观察到其存在于支气管上皮细胞中。在PS-MP刺激的原代人支气管上皮细胞(pDHBE)中,存在线粒体损伤,伴有线粒体活性氧(mito-ROS)过量产生,溶酶体生物合成和酸化水平显著升高,触发铁蛋白自噬的发生并增强COPD中的ADF,进而引发COPD急性加重(AECOPD)。通过线粒体特异性活性氧清除或铁死亡抑制重建自噬依赖性铁死亡可减轻过度炎症,并改善PS-MPs诱导的AECOPD。总体而言,我们的数据初步揭示,MPs在COPD中通过mito-ROS介导的自噬加剧铁死亡,这为进一步评估MPs对人类呼吸健康的危害以及COPD患者的潜在治疗药物提供了线索。ADF:自噬依赖性铁死亡;AECOPD:慢性阻塞性肺疾病急性加重;Cchord:静态顺应性;COPD:慢性阻塞性肺疾病;CQ:氯喹;CS:香烟烟雾;DEGs:差异表达基因;Fer-1:铁抑素-1;FEV0.1:第100毫秒用力呼气量;FVC:用力肺活量;GSH:谷胱甘肽;HE:苏木精和伊红;IL1B/IL-1β:白细胞介素1β;IL6:白细胞介素6;MDA:丙二醛;Mito-ROS:线粒体活性氧;MMA:甲基丙烯酸甲酯;MMF:最大呼气中期流速曲线;MMP:线粒体膜电位;MOI:感染复数;MPs:微塑料;MV:分钟通气量;PA:聚酰胺;PBS:磷酸盐缓冲液;PC:聚碳酸酯;pDHBE:COPD患者的原代人支气管上皮细胞;PET:聚对苯二甲酸乙二酯;PIF:吸气峰流速;PLA:聚乳酸;pNHBE:原代正常人支气管上皮细胞;PS-MPs:聚苯乙烯微塑料;PVA:聚醋酸乙烯酯;PVC:聚氯乙烯;Py-GCMS:热解气相色谱-质谱联用;SEM:扫描电子显微镜;Te:呼气时间;Ti:吸气时间;TNF/TNF-α:肿瘤坏死因子

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