褐藻糖胶
衰老
SIRT6型
表型
DNA损伤
DNA修复
细胞生物学
生物
Wnt信号通路
炎症
基因
癌症研究
化学
DNA
信号转导
生物化学
乙酰化
锡尔图因
多糖
免疫学
作者
Paul D. Robbins,Lei Zhang,Osama Elsallabi,Carolina Soto-Palma,Josh Bartz,Rahagir Salekeen,Allancer Nunes,Wandi Xu,Kyooa Lee,Brian M. Hughes,Borui Zhang,Abdalla D. Mohamed,Sara J. McGowan,Luise Angelini,Ryan O’Kelly,Seyed Ali Biashad,Eric Hillpot,Francesco Morandini,Andrei Seluanov,Vera Gorbunova
出处
期刊:Research Square - Research Square
日期:2025-06-06
标识
DOI:10.21203/rs.3.rs-6613032/v1
摘要
Abstract Aging is marked by the accumulation of senescent cells (SnCs), which contribute to tissue dysfunction and age-related diseases. Senotherapeutics, including senolytics which specifically induce lysis of SnCs and senomorphics, which suppress the senescence phenotype, represent promising therapeutic interventions for mitigating age-related pathologies and extending healthspan. Using a phenotypic-based senescent cell screening assay, we identified fucoidans, a class of sulfated polysaccharides derived from brown algae and seaweed, as novel senotherapeutics. In particular, fucoidan from Fucus vesiculosus (Fucoidan-FV) displayed potent senomorphic activity in different types of SnCs, reduced senescence in multiple tissues in aged mice, and extended healthspan in a mouse model of accelerated aging. Fucoidan-FV also enhanced the deacetylation and mono-ADP-ribosylation (mADPr) activity of SIRT6 and improved DNA repair and reduced senescence, in part, through SIRT6-dependent pathways. In addition, Fucoidan-FV downregulated genes associated with inflammation, Wnt signaling, and ECM remodeling pathways in SnCs and increased expression of genes involved with DNA repair. These findings support the translational potential of fucoidans as novel senotherapeutics that also are able to improve SIRT6-mediated DNA repair.
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