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首页> 外文期刊>Journal of Molecular Neuroscience: MN >Chronic, Long-Term Social Stress Can Cause Decreased Microtubule Protein Network Activity and Dynamics in Cerebral Cortex of Male Wistar Rats
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Chronic, Long-Term Social Stress Can Cause Decreased Microtubule Protein Network Activity and Dynamics in Cerebral Cortex of Male Wistar Rats

机译:长期,长期的社会压力可能导致雄性Wistar大鼠微管蛋白网络活动减少和大脑皮层动态

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摘要

Social stress is viewed as a factor in the etiology of a variety of psychopathologies such as depression and anxiety. Animal models of social stress are well developed and widely used in studying clinical and physiological effects of stress. Stress is known to significantly affect learning and memory, and this effect strongly depends on the type of stress, its intensity, and duration. It has been demonstrated that chronic and acute stress conditions can change neuronal plasticity, characterized by retraction of apical dendrites, reduction in axonogenesis, and decreased neurogenesis. Various behavioral studies have also confirmed a decrease in learning and memory upon exposure of animals to long-term chronic stress. On the other hand, the close relationship between microtubule (MT) protein network and neuroplasticity controlling system suggests the possibility of MT protein alterations in high stressful conditions. In this work, we have studied the kinetics, activity, and dynamicity changes of MT proteins in the cerebral cortex of male Wistar rats that were subjected to social instability for 35 and 100 days. Our results indicate that MT protein network dynamicity and polymerization ability is decreased under long-term (100 days) social stress conditions.
机译:社会压力被认为是诸如抑郁症和焦虑症等各种精神病学的病因。社会应激的动物模型已得到很好的发展,并广泛用于研究应激的临床和生理效应。众所周知,压力会显着影响学习和记忆,而这种影响在很大程度上取决于压力的类型,强度和持续时间。已经证明,慢性和急性应激条件可以改变神经元可塑性,其特征是根尖树突收缩,轴突发生减少和神经发生减少。各种行为研究还证实,动物长期处于长期应激状态下,其学习和记忆能力也会下降。另一方面,微管(MT)蛋白质网络与神经可塑性控制系统之间的密切关系表明在高压力条件下MT蛋白质发生改变的可能性。在这项工作中,我们研究了遭受社会不稳定35天和100天的雄性Wistar大鼠大脑皮质MT蛋白的动力学,活性和动态变化。我们的结果表明,在长期(100天)的社会压力条件下,MT蛋白网络的动态性和聚合能力降低。

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