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ergothioneine 可减轻氧化应激条件下的端粒缩短。

Ergothioneine Mitigates Telomere Shortening under Oxidative Stress Conditions.

机构信息

Blue California, Rancho Santa Margarita, CA, USA.

Life Length, Madrid, Spain.

出版信息

J Diet Suppl. 2022;19(2):212-225. doi: 10.1080/19390211.2020.1854919. Epub 2020 Dec 7.

DOI:10.1080/19390211.2020.1854919
PMID:33287595
Abstract

Shortened telomeres are associated with aging and age-related diseases. Oxidative stress is thought to be a major contributor to telomere shortening, and antioxidants may be able to mitigate these effects. Ergothioneine is a naturally occurring amino acid with potent antioxidant properties. In order to investigate ergothioneine's effects on telomere length, we cultured primary human fibroblasts under standard and oxidative (10 µM HO) conditions and treated cells with 0.04, 0.1, 0.3, or 1.0 mg/ml ergothioneine for 8 weeks. Telomere length measurements were performed using high-throughput quantitative fluorescent in situ hybridization (HT Q-FISH). Treatment with ergothioneine transiently increased relative telomerase activity after 24 h ( < 0.05 for all concentrations). Under oxidative conditions, ergothioneine treatment resulted in significantly longer median telomere length and 20 percentile telomere length, and significantly reduced the percentage of short telomeres (<3 kilobase pairs) for all treatment concentrations after 8 weeks. Telomere shortening rate was also reduced. Overall, ergothioneine demonstrated beneficial effects by decreasing the rate of telomere shortening and preserving telomere length under oxidative stress conditions. Our data support a potential role for ergothioneine in oxidative stress-related conditions and healthy aging.

摘要

端粒缩短与衰老和与年龄相关的疾病有关。氧化应激被认为是端粒缩短的主要原因,而抗氧化剂可能能够减轻这些影响。麦硫因是一种具有强大抗氧化特性的天然氨基酸。为了研究麦硫因对端粒长度的影响,我们在标准和氧化(10μM HO)条件下培养原代人成纤维细胞,并在 8 周内用 0.04、0.1、0.3 或 1.0mg/ml 的麦硫因处理细胞。使用高通量定量荧光原位杂交(HT Q-FISH)进行端粒长度测量。麦硫因处理后 24 小时内,相对端粒酶活性短暂增加(所有浓度均<0.05)。在氧化条件下,麦硫因处理导致中位端粒长度和 20 分位端粒长度显著延长,所有处理浓度的短端粒(<3 千碱基对)百分比显著降低(所有浓度均<0.05),8 周后端粒缩短率也降低。总之,麦硫因通过降低端粒缩短率和在氧化应激条件下保持端粒长度,表现出有益的作用。我们的数据支持麦硫因在与氧化应激相关的条件和健康衰老中的潜在作用。

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