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Do Dehydroepiandrosterone (DHEA) and Its Sulfate (DHEAS) Play a Role in the Stress Response in Domestic Animals?

机译:脱氢硫酮(DHEA)及其硫酸盐(DHEAS)在家畜中的应力反应中发挥作用吗?

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In animal husbandry, stress is often associated with poor health and welfare. Stress occurs when a physiological control system detects a state of real or presumptive threat to the animal’s homeostasis or a failure to control a fitness-critical variable. The definition of stress has mostly relied on glucocorticoids measurement, even though glucocorticoids represent one stress-response system, the hypothalamus-pituitary-adrenocortical axis, which is not precise enough as it is also related to metabolic regulation and activated in non-stressful situations (pleasure, excitement and arousal). The mammal adrenal can synthesize the androgenic steroid dehydroepiandrosterone (DHEA) and its sulfate metabolite (DHEAS), which have been associated to the stress response in several studies performed mostly in humans and laboratory animals. Although the functions of these steroids are not fully understood, available data suggest their antagonistic effects on glucocorticoids and, in humans, their secretion is affected by stress. This review explores the scientific literature on DHEA and DHEAS release in domestic animals in response to stressors of different nature (inflammatory, physical or social) and duration, and the extra-adrenal contribution to circulating DHEA. Then, the potential use of DHEA in conjunction with cortisol to improve the definition of the stress phenotype in farmed animals is discussed. Although the focus of this review is on farmed animals, examples from other species are reported when available.
机译:在畜牧业中,压力往往与健康和福利差有关。当生理控制系统检测到动物的稳态或无法控制健身临界变量的真实或推测威胁的状态时,发生应力。应激的定义大多依赖于糖皮质激素测量,即使糖皮质激素代表一个应激响应系统,下丘脑 - 垂体 - 肾上腺皮质轴,它们并不足够精确,因为它与代谢调节和在非压力情况下激活(快乐,兴奋和唤醒)。哺乳动物肾上腺可以合成雄激素类固醇脱氢硫代酮(DHEA)及其硫酸盐代谢物(DHEAS),其与大多数在人类和实验室动物中进行的几项研究中的应力反应相关。虽然这些类固醇的功能尚未完全明白,但可用的数据表明他们对糖皮质激素的拮抗作用,并且在人类中,它们的分泌受到压力的影响。本综述探讨了在国内动物的DHEA和DHEAS释放的科学文献,以应对不同性质(炎症,身体或社会或社会)和持续时间的压力,以及对循环DHEA的额外肾上腺贡献。然后,讨论了与皮质醇结合的潜在用途,以改善养殖动物中应力表型的定义。虽然本综述的重点是养殖动物,但可用时报告来自其他物种的实例。

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