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虾青素作为一种潜在的抗衰老物质:分子基础及对大脑衰老的关注。

Astaxanthin as a Putative Geroprotector: Molecular Basis and Focus on Brain Aging.

机构信息

Department of Pharmaceutical Pharmacological Sciences, University of Padova, 35131 Padova, Italy.

Bendessere™ Study Center, 35131 Padova, Italy.

出版信息

Mar Drugs. 2020 Jul 5;18(7):351. doi: 10.3390/md18070351.

Abstract

In recent years, the scientific interest in natural compounds with geroprotective activities has grown exponentially. Among the various naturally derived molecules, astaxanthin (ASX) represents a highly promising candidate geroprotector. By virtue of the central polyene chain, ASX acts as a scavenger of free radicals in the internal membrane layer and simultaneously controls oxidation on the membrane surface. Moreover, several studies have highlighted ASX's ability to modulate numerous biological mechanisms at the cellular level, including the modulation of transcription factors and genes directly linked to longevity-related pathways. One of the main relevant evolutionarily-conserved transcription factors modulated by astaxanthin is the forkhead box O3 gene (FOXO3), which has been recognized as a critical controller of cell fate and function. Moreover, FOXO3 is one of only two genes shown to robustly affect human longevity. Due to its tropism in the brain, ASX has recently been studied as a putative neuroprotective molecule capable of delaying or preventing brain aging in different experimental models of brain damage or neurodegenerative diseases. Astaxanthin has been observed to slow down brain aging by increasing brain-derived neurotrophic factor (BDNF) levels in the brain, attenuating oxidative damage to lipids, protein, and DNA and protecting mitochondrial functions. Emerging data now suggest that ASX can modulate Nrf2, FOXO3, Sirt1, and Klotho proteins that are linked to longevity. Together, these mechanisms provide support for a role of ASX as a potential geroneuroprotector.

摘要

近年来,科学界对具有抗衰老活性的天然化合物的兴趣呈指数级增长。在各种天然衍生的分子中,虾青素 (ASX) 是一种极具潜力的抗衰老保护剂。由于其中心多烯链,ASX 可作为内部膜层中自由基的清除剂,同时控制膜表面的氧化。此外,多项研究强调了 ASX 调节细胞水平多种生物学机制的能力,包括调节转录因子和与长寿相关途径直接相关的基因。虾青素调节的主要相关进化保守转录因子之一是叉头框 O3 基因 (FOXO3),它被认为是细胞命运和功能的关键控制器。此外,FOXO3 是仅有的两个被证明可显著影响人类寿命的基因之一。由于其在大脑中的趋向性,ASX 最近被研究为一种潜在的神经保护分子,能够在不同的脑损伤或神经退行性疾病的实验模型中延迟或预防大脑衰老。虾青素通过增加大脑中的脑源性神经营养因子 (BDNF) 水平来减缓大脑衰老,减轻脂质、蛋白质和 DNA 的氧化损伤,并保护线粒体功能。新出现的数据表明,ASX 可以调节与长寿相关的 Nrf2、FOXO3、Sirt1 和 Klotho 蛋白。这些机制共同为 ASX 作为一种潜在的神经保护剂提供了支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/89d8/7401246/effb37780edd/marinedrugs-18-00351-g001.jpg

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