School of Pharmacy, Monash University Malaysia, Jalan Lagoon Selantan, Bandar Sunway 47500, Selangor, Malaysia.
Jeffrey Cheah School of Medicine and Health Sciences, Monash University Malaysia, Jalan Lagoon Selatan, Bandar Sunway 47500, Selangor, Malaysia.
Nutrients. 2022 Aug 25;14(17):3494. doi: 10.3390/nu14173494.
The therapeutic effects of food rich in ellagitannins have been established to stem from its microbial metabolite, urolithin. Over the past decade, there has been a growing trend in urolithin research pertaining to its pharmacological properties. The purpose of this systematic review is to collate and synthesise all available data on urolithin's therapeutic ability, to highlight its potential as a pharmaceutical agent, and prospective direction on future research.
This systematic review was written based on the PRISMA guideline and was conducted across Ovid via Embase, Ovid MEDLINE, Cochrane Central Register for Controlled Trials, and Web of Science Core Collection.
A total of 41 animal studies were included in this systematic review based on the appropriate keyword. The included studies highlighted the neuroprotective, anti-metabolic disorder activity, nephroprotective, myocardial protective, anti-inflammatory, and musculoskeletal protection of urolithin A, B, and its synthetic analogue methylated urolithin A. The Sirt1, AMPK, and PI3K/AKT/mTOR signalling pathways were reported to be involved in the initiation of autophagy and mitochondrial biogenesis by urolithin A.
This review methodically discusses the therapeutic prospects of urolithins and provides scientific justification for the potential development of urolithin A as a potent natural mitophagy inducer for anti-ageing purposes.
富含鞣花单宁的食物的治疗效果源于其微生物代谢产物尿石素。在过去的十年中,尿石素的药理学特性研究呈增长趋势。本系统评价的目的是整理和综合所有关于尿石素治疗能力的可用数据,强调其作为药物制剂的潜力,并对未来研究提出前瞻性方向。
本系统评价基于 PRISMA 指南,通过 Ovid 进行,涵盖了 Ovid EMBASE、Ovid MEDLINE、Cochrane 中央对照试验注册库和 Web of Science 核心合集。
根据适当的关键词,本系统评价共纳入了 41 项动物研究。纳入的研究强调了尿石素 A、B 及其合成类似物甲基化尿石素 A 的神经保护、抗代谢紊乱活性、肾保护、心肌保护、抗炎和肌肉骨骼保护作用。据报道,尿石素 A 通过 Sirt1、AMPK 和 PI3K/AKT/mTOR 信号通路启动自噬和线粒体生物发生。
本综述系统地讨论了尿石素的治疗前景,并为尿石素 A 作为一种有效的天然自噬诱导剂用于抗衰老目的的潜在开发提供了科学依据。