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Bifidobacterium adolescentis-fermented supernatant preparation attenuates vascular senescence and age-related phenotypes by suppressing NF-κB-related signaling

衰老 生物 表型 活性氧 转录组 下调和上调 细胞生物学 生物化学 离子霉素 二十烷酸 药理学 信号转导 代谢组学 细胞内 血管平滑肌 花生四烯酸 血管生成 代谢组 调解人 秀丽隐杆线虫 化学 双歧杆菌 内皮 代谢途径 氧化应激 分泌物 细胞培养 老化 内皮干细胞 内分泌学
作者
Hongchen Jin,Huasong Bai,Tong Liu,Hengyan Wang,Yulong Yin,Siyu Ruan,Yunliang Li,Zhanzhong Wang
出处
期刊:npj science of food [Nature Portfolio]
标识
DOI:10.1038/s41538-026-01118-6
摘要

Anti-aging bioproducts from natural active ingredients represent a core future direction in food research. Cardiovascular aging drives most age-related disorders. This study investigated the anti-aging effects of a postbiotic preparations derived from brown algae extract fermented by Bifidobacterium adolescentis Life Age 20 (LA20FM). Multi-model were used, including doxorubicin (DOX)-induced senescent canine (CVECs) and feline vascular endothelial cells (FVECs), senescence-accelerated mouse prone 8 (SAMP8) mice, Caenorhabditis elegans , and naturally aged dogs and cats. In vitro, LA20FM markedly attenuated DOX-induced endothelial senescence, reduced the secretion of senescence-associated secretory phenotype factors, and restored endothelial function-related markers. In aged SAMP8 mice, LA20FM alleviated vascular remodeling, reduced circulating senescence- and inflammation-related biomarkers, and improved physiological performance. In C. elegans , LA20FM extended lifespan by approximately 30%, enhanced reproductive capacity, and significantly reduced intracellular reactive oxygen species levels. Comparable improvements in physiological parameters were also observed in aged dogs and cats. Transcriptomic analyses of CVECs and SAMP8 vascular tissues revealed that LA20FM treatment was accompanied by downregulation of NF-κB-related inflammatory signaling. Phorbol 12-myristate 13-acetate rescue experiments and early time-point analyses further supported NF-κB signaling as an early and functionally important mediator of its protective effects. Metabolomic analysis further revealed metabolic remodeling characterized by reduced lipid-associated metabolic activity and enhanced amino acid biosynthesis and antioxidant-related metabolism. Collectively, these findings indicate that LA20FM alleviates canine and feline vascular endothelial senescence and improves aging-associated phenotypes across multiple experimental models, supporting its potential as a postbiotic preparation for canine and feline nutritional intervention against vascular functional decline and further aging.

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