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锂与应激:通过应激机制增强适应性反应和生物性能。

Lithium and hormesis: Enhancement of adaptive responses and biological performance via hormetic mechanisms.

机构信息

Environmental Health Sciences Division, School of Public Health and Health Sciences, University of Massachusetts, Amherst, MA, USA.

Saba University School of Medicine, Caribbean, the Netherlands.

出版信息

J Trace Elem Med Biol. 2023 Jul;78:127156. doi: 10.1016/j.jtemb.2023.127156. Epub 2023 Mar 17.

Abstract

Biomedical and consumer interest in the health-promoting properties of pure single entities of known or unknown chemical constituents and mixtures has never been greater. Since its "rediscovery" in the 1950s, lithium is an example of such a constituent that represents an array of scientific and public health challenges and medical potentials that may now be understood best when seen through the lens of the dose-response paradigm known as hormesis. The present paper represents the first review of the capacity of lithium to induce hormetic dose responses in a broad range of biological models, organ systems, and endpoints. Of significance is that the numerous hormetic findings occur with extensive concentration/dose response evaluations with the optimal dosing being similar across multiple organ systems. The particular focus of these hormetic dose-response findings was targeted to research with a broad spectrum of stem cell types and neuroprotective effects. These findings suggest that lithium may have critically valuable systemic effects with respect to those therapeutically treated with lithium as well as for exposures that may be achieved via dietary intervention.

摘要

生物医学和消费者对具有已知或未知化学成分的单一实体以及混合物的促进健康特性的兴趣从未如此之大。自 20 世纪 50 年代“重新发现”以来,锂就是这样一种成分的代表,它代表了一系列科学和公共卫生方面的挑战和医学潜力,而当从被称为适应原性的剂量反应范式的角度来看待时,这些可能现在更容易理解。本文首次综述了锂在广泛的生物学模型、器官系统和终点中诱导适应原性剂量反应的能力。重要的是,许多适应原性发现都伴随着广泛的浓度/剂量反应评估,并且在多个器官系统中最佳剂量相似。这些适应原性剂量反应发现的特别关注点是针对具有广泛谱系的干细胞类型和神经保护作用的研究。这些发现表明,锂可能对接受锂治疗的患者以及通过饮食干预可能实现的暴露具有至关重要的系统作用。

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