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Response to stress in Drosophila is mediated by gender, age and stress paradigm

机译:果蝇对压力的反应是由性别,年龄和压力范式介导的

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摘要

All living organisms must maintain equilibrium in response to internal and external challenges within their environment. Changes in neural plasticity (alterations in neuronal populations, dendritic remodeling, and synaptic turnover) are critical components of the homeostatic response to stress, which has been strongly implicated in the onset of affective disorders. However, stress is differentially perceived depending on the type of stress and its context, as well as genetic background, age and sex; therefore, an individual's maintenance of neuronal homeostasis must differ depending upon these variables. We established Drosophila as a model to analyze homeostatic responses to stress. Sexually immature and mature females and males from an isogenic wild-type strain raised under controlled environmental conditions were exposed to four reproducible and high-throughput translatable stressors to facilitate the analysis of a large number of animals for direct comparisons. These animals were assessed in an open-field arena, in a light-dark box, and in a forced swim test, as well as for sensitivity to the sedative effects of ethanol. These studies establish that immature and mature females and males represent behaviorally distinct populations under control conditions as well as after exposure to different stressors. Therefore, the neural substrates mediating the stress response must be differentially expressed depending upon the hormonal status of the brain. In addition, an adaptive response to a given stressor in one paradigm was not predictive for outcomes in other paradigms.
机译:所有活生物体都必须保持平衡,以应对其环境中的内部和外部挑战。神经可塑性的变化(神经元种群的变化,树突状重塑和突触更新)是对压力的体内稳态反应的关键组成部分,与情绪障碍的发作密切相关。但是,根据压力的类型及其背景,遗传背景,年龄和性别,对压力的理解有所不同。因此,个体对神经元稳态的维持必须取决于这些变量。我们建立了果蝇作为分析对压力的稳态反应的模型。将来自在受控环境条件下饲养的同基因野生型品系的未成熟的雌,雄成年雌性和雄性暴露于四个可重现且高通量的可翻译应激源,以利于分析大量动物以进行直接比较。在露天场地,明暗盒子和强迫游泳试验中对这些动物进行评估,并评估其对乙醇镇静作用的敏感性。这些研究表明,在控制条件下以及暴露于不同压力源之后,未成熟和成熟的雌性和雄性代表了行为上不同的种群。因此,取决于大脑的荷尔蒙状态,介导应激反应的神经基质必须被差异表达。此外,在一个范式中对给定压力源的适应性反应不能预测其他范式的结果。

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