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Hormesis: Decoding Two Sides of the Same Coin

机译:盛装:解码同一枚硬币的两个方面

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摘要

In the paradigm of drug administration, determining the correct dosage of a therapeutic is often a challenge. Several drugs have been noted to demonstrate contradictory effects per se at high and low doses. This duality in function of a drug at different concentrations is known as hormesis. Therefore, it becomes necessary to study these biphasic functions in order to understand the mechanistic basis of their effects. In this article, we focus on different molecules and pathways associated with diseases that possess a duality in their function and thus prove to be the seat of hormesis. In particular, we have highlighted the pathways and factors involved in the progression of cancer and how the biphasic behavior of the molecules involved can alter the manifestations of cancer. Because of the pragmatic role that it exhibits, the imminent need is to draw attention to the concept of hormesis. Herein, we also discuss different stressors that trigger hormesis and how stress-mediated responses increase the overall adaptive response of an individual to stress stimulus. We talk about common pathways through which cancer progresses (such as nuclear factor erythroid 2-related factor 2-Kelch-like ECH-associated protein 1 (Nrf2-Keap1), sirtuin-forkhead box O (SIRT-FOXO) and others), analyzing how diverse molecules associated with these pathways conform to hormesis.
机译:在药物施用的范例中,确定治疗剂的正确剂量通常是一个挑战。已经注意到几种药物在高剂量和低剂量下均表现出相互矛盾的作用。药物在不同浓度下的这种双重功能被称为兴奋剂。因此,有必要研究这些双相函数以了解其作用的机理基础。在本文中,我们着眼于与疾病相关的不同分子和途径,这些疾病的功能具有双重性,因此被证明是兴奋剂的所在地。特别是,我们重点介绍了癌症进展中涉及的途径和因素,以及所涉及分子的双相行为如何改变癌症的表现。由于它所表现出的务实作用,迫切需要提请注意“兴奋剂”的概念。在这里,我们还讨论了触发兴奋的不同压力源,以及压力介导的反应如何增加个体对压力刺激的总体适应性反应。我们讨论了癌症发展的常见途径(例如核因子类胡萝卜素2相关因子2柯尔奇样ECH相关蛋白1(Nrf2-Keap1),瑟土因-叉头盒O(SIRT-FOXO)等),分析与这些途径相关的各种分子如何符合兴奋作用。

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