首页> 外文期刊>General and comparative endocrinology >Hair cortisol levels track phylogenetic and age related differences in hypothalamic-pituitary-adrenal (HPA) axis activity in non-human primates.
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Hair cortisol levels track phylogenetic and age related differences in hypothalamic-pituitary-adrenal (HPA) axis activity in non-human primates.

机译:头发皮质醇水平跟踪非人类灵长类动物的下丘脑-垂体-肾上腺(HPA)轴活动的系统发育和与年龄相关的差异。

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摘要

Hair has been shown to archive a uniquely time averaged signal of endocrine activity, and holds attractive advantages for both laboratory and field research. Prior research has explored the potential of hair hormone analysis to examine hormone-behavior relationships. To date, no research has focused on the potential of the technique to investigate age-related changes or taxon differences in endocrine function. It is known that non-human primate infants of many taxa exhibit high cortisol levels after parturition, which rapidly decline with age. It has also been shown that hypercortisolism generally characterizes platyrrhine (New World monkey) endocrine function. These endocrine trends have been characterized using cortisol levels determined from serum, plasma, and feces. Here we test whether cortisol levels determined from hair recover similar phylogenetic and age related patterns in endocrine function in non-human primates. In order to test whether hair cortisol reflect infant hypercortisolism with significant age-related decline, hair cortisol levels are measured in samples from wild vervet monkeys (Chlorocebus aethiops) and captive Guinea baboons (Papio hamadryas papio), ranging in age from infants through juveniles. Further, in order to test whether platyrrhines exhibit significantly higher hair cortisol levels compared to strepsirrhines and catarrhines, and therefore faithfully recover similar signals as more traditionally used substrates (e.g. serum), hair cortisol levels are quantified in adult female hair samples collected from a broad range of non-human primate taxa. Results confirm that hair cortisol levels accurately reflect known phylogenetic and age related patterns of circulating cortisol levels. Therefore, these results suggest that hair may be an ideal hormone bearing substrate for research focused on the examination of population endocrine profiles, cross-sectional studies of endocrine function and taxon variation in hormone levels, as well as stable behavioral trends.
机译:头发已被证明可以存档独特的时间平均内分泌活动信号,并且对于实验室和现场研究都具有诱人的优势。先前的研究已经探索了头发荷尔蒙分析潜在的检查荷尔蒙-行为关系的潜力。迄今为止,还没有研究集中于该技术研究内分泌功能中与年龄相关的变化或分类群差异的潜力。已知许多类群的非人类灵长类婴儿在分娩后表现出高皮质醇水平,并随着年龄的增长而迅速下降。还已经显示,皮质醇过多症通常表征了白痢(新世界猴)的内分泌功能。这些内分泌趋势已使用从血清,血浆和粪便中测定的皮质醇水平进行了表征。在这里,我们测试了由头发确定的皮质醇水平是否在非人类灵长类动物的内分泌功能中恢复了相似的系统发育和与年龄相关的模式。为了测试毛发皮质醇是否反映了年龄相关性显着下降的婴幼儿皮质醇过多症,对野生黑长尾猴(Chlorocebus aethiops)和圈养的几内亚狒狒(Papio hamadryas papio)的样品进行了测量,这些样品的年龄范围从婴儿到青少年。此外,为了测试与腹泻性鼻炎和卡他炎相比,扁桃体是否表现出显着更高的头发皮质醇水平,并因此忠实地回收与更传统使用的底物(例如血清)相似的信号,对从广泛收集的成年女性头发样本中的皮质醇水平进行了定量非人类灵长类生物分类的范围。结果证实,头发皮质醇水平准确反映了循环皮质醇水平的已知系统发育和年龄相关模式。因此,这些结果表明,对于研究人群内分泌概况,内分泌功能和激素水平的分类群变化以及稳定的行为趋势的研究,头发可能是理想的荷尔蒙载体。

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