Department of Psychology, University of Wisconsin-Madison, Madison, WI, USA.
Biol Psychiatry. 2010 Jan 15;67(2):175-81. doi: 10.1016/j.biopsych.2009.07.039.
Hypothalamic-pituitary-adrenal (HPA) system activation is adaptive in response to stress, and HPA dysregulation occurs in stress-related psychopathology. It is important to understand the mechanisms that modulate HPA output, yet few studies have addressed the neural circuitry associated with HPA regulation in primates and humans. Using high-resolution F-18-fluorodeoxyglucose positron emission tomography (FDG-PET) in rhesus monkeys, we assessed the relation between individual differences in brain activity and HPA function across multiple contexts that varied in stressfulness.
Using a logical AND conjunctions analysis, we assessed cortisol and brain metabolic activity with FDG-PET in 35 adolescent rhesus monkeys exposed to two threat and two home-cage conditions. To test the robustness of our findings, we used similar methods in an archival data set. In this data set, brain metabolic activity and cortisol were assessed in 17 adolescent male rhesus monkeys that were exposed to three stress-related contexts.
Results from the two studies revealed that subgenual prefrontal cortex (PFC) metabolism (Brodmann's area 25/24) consistently predicted individual differences in plasma cortisol concentrations regardless of the context in which brain activity and cortisol were assessed.
These findings suggest that activation in subgenual PFC may be related to HPA output across a variety of contexts (including familiar settings and novel or threatening situations). Individuals prone to elevated subgenual PFC activity across multiple contexts may be individuals who consistently show heightened cortisol and may be at risk for stress-related HPA dysregulation.
下丘脑-垂体-肾上腺(HPA)系统的激活是对压力的适应性反应,而 HPA 失调发生在与压力相关的精神病理学中。了解调节 HPA 输出的机制很重要,但很少有研究探讨与灵长类动物和人类 HPA 调节相关的神经回路。使用高分辨率 F-18-氟脱氧葡萄糖正电子发射断层扫描(FDG-PET),我们评估了个体大脑活动差异与跨多个不同压力程度的情境的 HPA 功能之间的关系。
使用逻辑与(conjunctions)分析,我们在 35 只处于威胁和两个家庭笼两种情境下的青春期恒河猴中评估了皮质醇和大脑代谢活动与 FDG-PET 的关系。为了检验我们发现的稳健性,我们在一个档案数据集上使用了类似的方法。在这个数据集里,我们评估了 17 只处于三种与压力相关情境下的青春期雄性恒河猴的大脑代谢活动和皮质醇。
两项研究的结果表明,无论评估大脑活动和皮质醇的情境如何,前扣带回皮质(PFC)的亚属代谢(Brodmann 区 25/24)始终可以预测血浆皮质醇浓度的个体差异。
这些发现表明,亚属 PFC 的激活可能与多种情境(包括熟悉的环境和新的或威胁的情境)下的 HPA 输出有关。在多个情境中始终表现出较高亚属 PFC 活动的个体可能是皮质醇持续升高的个体,并且可能有压力相关的 HPA 失调的风险。