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用富含多酚的天然提取物靶向衰老或化疗引起的衰老,可延长和改善小鼠的寿命和健康跨度。

Targeting senescence induced by age or chemotherapy with a polyphenol-rich natural extract improves longevity and healthspan in mice.

机构信息

Veneto Institute of Molecular Medicine, Padova, Italy.

Department of Medicine, University of Padova, Padova, Italy.

出版信息

Nat Aging. 2024 Sep;4(9):1231-1248. doi: 10.1038/s43587-024-00663-7. Epub 2024 Jul 1.

Abstract

Accumulating senescent cells within tissues contribute to the progression of aging and age-related diseases. Botanical extracts, rich in phytoconstituents, present a useful resource for discovering therapies that could target senescence and thus improve healthspan. Here, we show that daily oral administration of a standardized extract of Salvia haenkei (Haenkenium (HK)) extended lifespan and healthspan of naturally aged mice. HK treatment inhibited age-induced inflammation, fibrosis and senescence markers across several tissues, as well as increased muscle strength and fur thickness compared with age-matched controls. We also found that HK treatment reduced acutely induced senescence by the chemotherapeutic agent doxorubicin, using p16 reporter mice. We profiled the constituent components of HK by mass spectrometry, and identified luteolin-the most concentrated flavonoid in HK-as a senomorphic compound. Mechanistically, by performing surface plasmon resonance and in situ proximity ligation assay, we found that luteolin disrupted the p16-CDK6 interaction. This work demonstrates that administration of HK promotes longevity in mice, possibly by modulating cellular senescence and by disrupting the p16-CDK6 interaction.

摘要

组织内衰老细胞的积累会导致衰老和与年龄相关的疾病的进展。富含植物成分的植物提取物为发现针对衰老的疗法提供了有用的资源,从而可以改善健康寿命。在这里,我们表明,每天口服标准化的Salvia haenkei(Haenkenium(HK))提取物可延长自然衰老小鼠的寿命和健康寿命。与年龄匹配的对照组相比,HK 治疗可抑制几种组织中年龄引起的炎症、纤维化和衰老标志物的形成,并增加肌肉力量和皮毛厚度。我们还发现,HK 治疗可通过化学治疗剂阿霉素诱导的 p16 报告小鼠的急性衰老。我们通过质谱法对 HK 的成分进行了分析,并鉴定出木犀草素- HK 中最集中的类黄酮-作为衰老化合物。从机制上讲,通过进行表面等离子体共振和原位邻近连接测定,我们发现木犀草素破坏了 p16-CDK6 的相互作用。这项工作表明,HK 的给药可促进小鼠的长寿,这可能是通过调节细胞衰老和破坏 p16-CDK6 相互作用来实现的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/650b/11408255/b666e9c67357/43587_2024_663_Fig1_HTML.jpg

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