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氘的生物学影响及低氘水的治疗潜力。

The biological impact of deuterium and therapeutic potential of deuterium-depleted water.

作者信息

Qu Jiao, Xu Yufei, Zhao Shuang, Xiong Ling, Jing Jing, Lui Su, Huang Juan, Shi Hubing

机构信息

Institute of Breast Health Medicine, State Key Laboratory of Biotherapy, West China Hospital, Sichuan University and Collaborative Innovation Center, Chengdu, China.

Department of Radiology, West China Hospital, Sichuan University, Chengdu, China.

出版信息

Front Pharmacol. 2024 Jul 22;15:1431204. doi: 10.3389/fphar.2024.1431204. eCollection 2024.

Abstract

Since its discovery by Harold Urey in 1932, deuterium has attracted increased amounts of attention from the scientific community, with many previous works aimed to uncover its biological effects on living organisms. Existing studies indicate that deuterium, as a relatively rare isotope, is indispensable for maintaining normal cellular function, while its enrichment and depletion can affect living systems at multiple levels, including but not limited to molecules, organelles, cells, organs, and organisms. As an important compound of deuterium, deuterium-depleted water (DDW) possess various special effects, including but not limited to altering cellular metabolism and potentially inhibiting the growth of cancer cells, demonstrating anxiolytic-like behavior, enhancing long-term memory in rats, reducing free radical oxidation, regulating lipid metabolism, harmonizing indices related to diabetes and metabolic syndrome, and alleviating toxic effects caused by cadmium, manganese, and other harmful substances, implying its tremendous potential in anticancer, neuroprotective, antiaging, antioxidant, obesity alleviation, diabetes and metabolic syndrome treatment, anti-inflammatory, and detoxification, thereby drawing extensive attention from researchers. This review comprehensively summarizes the latest progress in deuterium acting on living organisms. We start by providing a snapshot of the distribution of deuterium in nature and the tolerance of various organisms to it. Then, we discussed the impact of deuterium excess and deprivation, in the form of deuterium-enriched water (DEW) and deuterium-depleted water (DDW), on living organisms at different levels. Finally, we focused on the potential of DDW as an adjuvant therapeutic agent for various diseases and disorders.

摘要

自1932年哈罗德·尤里发现氘以来,它已引起科学界越来越多的关注,此前许多研究旨在揭示其对生物体的生物学效应。现有研究表明,氘作为一种相对稀有的同位素,对维持细胞正常功能不可或缺,而其富集和消耗会在多个层面影响生命系统,包括但不限于分子、细胞器、细胞、器官和生物体。作为氘的一种重要化合物,去氘水(DDW)具有多种特殊效应,包括但不限于改变细胞代谢、潜在抑制癌细胞生长、表现出抗焦虑样行为、增强大鼠的长期记忆、减少自由基氧化、调节脂质代谢、协调与糖尿病和代谢综合征相关的指标,以及减轻镉、锰等有害物质造成的毒性作用,这暗示了其在抗癌、神经保护、抗衰老、抗氧化、减轻肥胖、治疗糖尿病和代谢综合征、抗炎和解毒方面的巨大潜力,从而引起了研究人员的广泛关注。本综述全面总结了氘作用于生物体的最新进展。我们首先概述了氘在自然界中的分布以及各种生物对它的耐受性。然后,我们讨论了以富氘水(DEW)和去氘水(DDW)形式存在的氘过量和缺乏对不同层面生物体的影响。最后,我们重点关注了去氘水作为各种疾病和病症辅助治疗剂的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e45f/11298373/20b77b393a52/fphar-15-1431204-g001.jpg

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