Effect of omega-3 fatty acids on the telomere length: A mini meta-analysis of clinical trials.

Q2 Biochemistry, Genetics and Molecular Biology
Sawan Ali, Giovanni Scapagnini, Sergio Davinelli
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引用次数: 8

Abstract

Telomeres are protective caps at the end of eukaryotic chromosomes, whose length is correlated with health and lifespan. Telomere attrition is a common feature of the aging process and can be accelerated by oxidative stress and chronic inflammation. Various nutrients influence the telomere length, partially due to their antioxidant and anti-inflammatory properties. The aim of this review was to meta-analytically assess the effect of omega-3 fatty acids on the telomere length. We searched four databases (PubMed, Web of Sciences, Scopus, and the Cochrane Library) from inception until November 2021. Of 573 records, a total of 5 clinical trials were included for the quantitative meta-analysis, comprising a total of 337 participants. The results revealed an overall beneficial effect of omega-3 fatty acids on the telomere length (mean difference = 0.16; 95% CI, 0.02, 0.30; p = 0.02). Despite a limited number of studies, the available evidence suggests that omega-3 fatty acids may positively affect the telomere length. However, larger clinical trials are needed to confirm our findings, along with studies aimed to clarify the underlying molecular mechanisms.

omega-3脂肪酸对端粒长度的影响:临床试验的小型荟萃分析。
端粒是真核生物染色体末端的保护帽,其长度与健康和寿命相关。端粒损耗是衰老过程的共同特征,氧化应激和慢性炎症可加速端粒损耗。各种营养物质影响端粒长度,部分原因是它们的抗氧化和抗炎特性。本综述的目的是荟萃分析评估-3脂肪酸对端粒长度的影响。从成立到2021年11月,我们检索了四个数据库(PubMed, Web of Sciences, Scopus和Cochrane Library)。在573份记录中,共有5项临床试验被纳入定量荟萃分析,共有337名参与者。结果显示,omega-3脂肪酸对端粒长度的总体有益影响(平均差异= 0.16;95% ci, 0.02, 0.30;P = 0.02)。尽管研究数量有限,但现有证据表明-3脂肪酸可能对端粒长度产生积极影响。然而,需要更大规模的临床试验来证实我们的发现,以及旨在阐明潜在分子机制的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biomolecular Concepts
Biomolecular Concepts Biochemistry, Genetics and Molecular Biology-Biochemistry, Genetics and Molecular Biology (all)
CiteScore
5.30
自引率
0.00%
发文量
27
审稿时长
12 weeks
期刊介绍: BioMolecular Concepts is a peer-reviewed open access journal fostering the integration of different fields of biomolecular research. The journal aims to provide expert summaries from prominent researchers, and conclusive extensions of research data leading to new and original, testable hypotheses. Aspects of research that can promote related fields, and lead to novel insight into biological mechanisms or potential medical applications are of special interest. Original research articles reporting new data of broad significance are also welcome. Topics: -cellular and molecular biology- genetics and epigenetics- biochemistry- structural biology- neurosciences- developmental biology- molecular medicine- pharmacology- microbiology- plant biology and biotechnology.
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