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来自裙带菜的 2,7-二羟基苯并[c][1,2]氧杂环戊烯-6,6'-二酮可改善纳米塑料诱导的内皮过早衰老和功能障碍。

2,7-Phloroglucinol-6,6'-bieckol from Ecklonia cava ameliorates nanoplastics-induced premature endothelial senescence and dysfunction.

机构信息

College of Pharmacy and Natural Medicine Research Institute, Mokpo National University, Muan 58554, Republic of Korea.

Division of Commercialization Support, Honam National Institute of Biological Resources, Mokpo 58762, Republic of Korea.

出版信息

Sci Total Environ. 2024 Nov 1;949:175007. doi: 10.1016/j.scitotenv.2024.175007. Epub 2024 Jul 23.

Abstract

Nanoplastics (NPs), plastic particles ranging from 1 to 100 nm are ubiquitous environmental pollutants infiltrating ecosystems. Their small size and widespread use in various products raise concerns for human health, particularly their association with cardiovascular diseases (CVD). NPs can enter the human body through multiple routes, causing oxidative stress, and leading to the senescence and dysfunction of endothelial cells (ECs). Although there are potential natural compounds for treating CVD, there is limited research on preventing CVD induced by NPs. This study investigates the efficacy of Ecklonia cava extract (ECE) in preventing NPs-induced premature vascular senescence and dysfunction. Exposure of porcine coronary arteries (PCAs) and porcine coronary ECs to NPs, either alone or in combination with ECE, demonstrated that ECE mitigates senescence-associated β-galactosidase (SA-β-gal) activity induced by NPs, thus preventing premature endothelial senescence. ECE also improved NPs-induced vascular dysfunction. The identified active ingredient in Ecklonia cava, 2,7'-Phloroglucinol-6,6'-bieckol (PHB), a phlorotannin, proved to be pivotal in these protective effects. PHB treatment ameliorated SA-β-gal activity, reduced oxidative stress, restored cell proliferation, and decreased the expression of cell cycle regulatory proteins such as p53, p21, p16, and angiotensin type 1 receptor (AT1), well known triggers for EC senescence. Moreover, PHB also improved NPs-induced vascular dysfunction by upregulating endothelial nitric oxide synthase (eNOS) expression and restoring endothelium-dependent vasorelaxation. In conclusion, Ecklonia cava and its active ingredient, PHB, exhibit potential as therapeutic agents against NPs-induced premature EC senescence and dysfunction, indicating a protective effect against environmental pollutants-induced CVDs associated with vascular dysfunction.

摘要

纳米塑料(NPs)是一种粒径在 1 至 100nm 之间的塑料颗粒,广泛存在于生态系统中,是一种环境污染物。它们的体积小、用途广泛,这引起了人们对人类健康的关注,尤其是它们与心血管疾病(CVD)的关系。NPs 可以通过多种途径进入人体,引起氧化应激,导致内皮细胞(ECs)衰老和功能障碍。尽管有一些潜在的天然化合物可用于治疗 CVD,但关于预防 NPs 引起的 CVD 的研究有限。本研究旨在探讨裙带菜提取物(ECE)预防 NPs 诱导的血管过早衰老和功能障碍的功效。本研究将猪冠状动脉(PCAs)和猪冠状动脉内皮细胞(ECs)暴露于 NPs 或与 ECE 联合暴露,结果表明 ECE 可减轻 NPs 诱导的 SA-β-gal 活性,从而预防内皮过早衰老。ECE 还改善了 NPs 诱导的血管功能障碍。裙带菜中的活性成分 2,7'-间苯三酚-6,6'-双贝壳杉烯酸(PHB),一种 phlorotannin,被证明在这些保护作用中起关键作用。PHB 治疗可改善 SA-β-gal 活性,减少氧化应激,恢复细胞增殖,并降低 p53、p21、p16 和血管紧张素 1 型受体(AT1)等细胞周期调节蛋白的表达,这些蛋白是内皮细胞衰老的已知触发因素。此外,PHB 还通过上调内皮型一氧化氮合酶(eNOS)的表达和恢复内皮依赖性血管舒张来改善 NPs 诱导的血管功能障碍。总之,裙带菜及其活性成分 PHB 具有作为治疗 NPs 诱导的内皮过早衰老和功能障碍的治疗剂的潜力,表明其对与血管功能障碍相关的环境污染物诱导的 CVD 具有保护作用。

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