Department of Medicine and Health Sciences "V. Tiberio", University of Molise, 86100 Campobasso, Italy.
Department of Science, University of Basilicata, V. le Ateneo Lucano 10, 85100 Potenza, Italy.
Mar Drugs. 2023 Dec 16;21(12):643. doi: 10.3390/md21120643.
Decreased adult neurogenesis, or the gradual depletion of neural stem cells in adult neurogenic niches, is considered a hallmark of brain aging. This review provides a comprehensive overview of the intricate relationship between aging, adult neurogenesis, and the potential neuroregenerative properties of astaxanthin, a carotenoid principally extracted from the microalga The unique chemical structure of astaxanthin enables it to cross the blood-brain barrier and easily reach the brain, where it may positively influence adult neurogenesis. Astaxanthin can affect molecular pathways involved in the homeostasis, through the activation of FOXO3-related genetic pathways, growth, and regeneration of adult brain neurons, enhancing cell proliferation and the potency of stem cells in neural progenitor cells. Furthermore, astaxanthin appears to modulate neuroinflammation by suppressing the NF-κB pathway, reducing the production of pro-inflammatory cytokines, and limiting neuroinflammation associated with aging and chronic microglial activation. By modulating these pathways, along with its potent antioxidant properties, astaxanthin may contribute to the restoration of a healthy neurogenic microenvironment, thereby preserving the activity of neurogenic niches during both normal and pathological aging.
成年神经发生减少,或成年神经发生龛内神经干细胞的逐渐耗竭,被认为是大脑衰老的一个标志。本综述全面概述了衰老、成年神经发生以及虾青素的潜在神经再生特性之间的复杂关系,虾青素主要从微藻雨生红球藻中提取。虾青素独特的化学结构使其能够穿过血脑屏障并轻易到达大脑,从而可能对成年神经发生产生积极影响。虾青素可以通过激活 FOXO3 相关基因途径来影响参与内稳态、生长和成年大脑神经元再生的分子途径,增强细胞增殖和神经祖细胞中干细胞的活力。此外,虾青素似乎通过抑制 NF-κB 途径来调节神经炎症,减少促炎细胞因子的产生,并限制与衰老和慢性小胶质细胞激活相关的神经炎症。通过调节这些途径以及其强大的抗氧化特性,虾青素可能有助于恢复健康的神经发生微环境,从而在正常和病理性衰老过程中维持神经发生龛的活性。