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

间苯三酚 氧化应激 内皮功能障碍 衰老 伊诺斯 药理学 一氧化氮 内皮 一氧化氮合酶 化学 医学 生物化学 内科学 有机化学
作者
Hwan-Hee Sim,Saugat Shiwakoti,Ji‐Hyeok Lee,In-Young Lee,Yejoo Ok,Han-Kyu Lim,Ju-Young Ko,Min–Ho Oak
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:949: 175007-175007 被引量:2
标识
DOI:10.1016/j.scitotenv.2024.175007
摘要

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.
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