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Complete reversal of dendritic atrophy in CA3 neurons of the hippocampusby rehabilitation in restraint stressed rats

机译:约束应激大鼠的康复完全逆转海马CA3神经元的树突萎缩

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We have shown previously that chronic restraint stress causes atrophy of apical dendrites and alterations in the spine density of CA3 hippocampal neurons in rats. In the present study, the effect of 45 days of rehabilitation following 21 days of restraint stress on the dendritic morphology of CA3 neurons of the hippocampus was carried out. The results revealed that 45 days of rehabilitation reverses restraint stress-induced (6h/day for 21 days) apical dendritic atrophy in CA3 neurons of the hippocampus. Whereas prolonged repeated restraint stress during this period also resulted in an atrophy of basal dendrites, suggesting that long-term stress can affect the hippocampal neurons more severely. These results showed that chronic stress-induced structural pathology of hippocampal neurons can be completely reversed by rehabilitation.
机译:以前我们已经表明,慢性束缚应激会导致大鼠根尖树突萎缩和大鼠CA3海马神经元的脊柱密度改变。在本研究中,进行了21天的束缚应激后45天康复对海马CA3神经元树突形态的影响。结果显示,在45天的康复过程中,海马CA3神经元的束缚树突状萎缩(6小时/天,共21天)可逆转。而在此期间长时间反复施加约束压力也会导致基底树突萎缩,这表明长期压力会更严重地影响海马神经元。这些结果表明,慢性应激诱导的海马神经元的结构病理可以通过康复完全逆转。

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