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Quantification of a Glucocorticoid Profile in Non-pooled Samples Is Pivotal in Stress Research Across Vertebrates

机译:非池化样品中糖皮质激素分布的定量分析在整个脊椎动物的研究中至关重要。

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摘要

Vertebrates are faced continuously with a variety of potential stressful stimuli and react by a highly conserved endocrine stress response. An immediate catecholamine mediated response increases plasma glucose levels in order to prepare the organism for the “fight or flight” reaction. In addition, in a matter of minutes after this (nor)adrenaline release, glucocorticoids, in particular cortisol or corticosterone depending on the species, are released through activation of the hypothalamic-pituitary-interrenal (HPI) axis in fish or hypothalamic-pituitary-adrenal (HPA) axis in other vertebrates. These plasma glucocorticoids are well documented and widely used as biomarker for stress across vertebrates. In order to study the role of glucocorticoids in acute and chronic stress and gain in-depth insight in the stress axis (re)activity across vertebrates, it is pivotal to pin-point the involved molecules, to understand the mechanisms of how the latter are synthesized, regulated and excreted, and to grasp their actions on a plethora of biological processes. Furthermore, in-depth knowledge on the characteristics of the tissues as well as on the analytical methodologies available for glucocorticoid quantification is needed. This manuscript is to be situated in the multi-disciplinary research topic of glucocorticoid action across vertebrates which is linked to a wide range of research domains including but not limited to biochemistry, ecology, endocrinology, ethology, histology, immunology, morphology, physiology, and toxicology, and provides a solid base for all interested in stress, in particular glucocorticoid, related research. In this framework, internationally validated confirmation methods for quantification of a glucocorticoid profile comprising: (i) the dominant hormone; (ii) its direct precursors; (iii) its endogenously present phase I metabolites; and (iv) the most abundant more polar excreted exogenous phase I metabolites in non-pooled samples are pivotal.
机译:脊椎动物不断面对各种潜在的应激刺激,并通过高度保守的内分泌应激反应做出反应。立即的儿茶酚胺介导的反应会增加血浆葡萄糖水平,以使生物体为“战斗或逃跑”反应做好准备。此外,在这种(去甲肾上腺素)释放后几分钟内,取决于鱼种的糖皮质激素,特别是皮质醇或皮质酮,通过激活下丘脑-垂体-肾间(HPI)轴在鱼或下丘脑-垂体-中释放。其他脊椎动物中的肾上腺(HPA)轴。这些血浆糖皮质激素有充分的文献记载,并广泛用作跨脊椎动物应激的生物标记。为了研究糖皮质激素在急性和慢性应激中的作用,并深入了解整个脊椎动物的应激轴(再)活性,精确定位所涉及的分子,了解后者的机制至关重要。合成,调节和排泄,并掌握它们在众多生物过程中的作用。此外,需要对组织特征以及可用于糖皮质激素定量的分析方法的深入了解。该手稿将被纳入涉及跨脊椎动物的糖皮质激素作用的多学科研究主题,该主题与广泛的研究领域相关,包括但不限于生物化学,生态学,内分泌学,行为学,组织学,免疫学,形态学,生理学和毒理学,为所有对压力感兴趣的人,尤其是糖皮质激素相关研究提供坚实的基础。在此框架下,国际上公认的糖皮质激素分布定量确认方法包括:(i)优势激素; (ii)其直接前体; (iii)其内源性的I期代谢产物; (iv)非合并样品中极性最强,分泌更多的外源性I相代谢产物至关重要。

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