清羊参苷对社交失败小鼠神经可塑性的影响。

Q1 Health Professions
Jingru Wang, Weishi Chen, Qiang Zhu, Yao Liu, Zheng Kang, Dingding Liu, Guirong Zeng
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引用次数: 0

摘要

背景:清羊参是一种民间药物,用于治疗因社会失败压力引起的抑郁症等精神障碍。海马的神经可塑性对认知和情绪的调节至关重要,其损伤可能与抑郁症的发生和发展有关。我们前期研究发现清阳参苷(QYS)可改善社交失败小鼠抑郁样行为,主要通过激活PGC-1α/FNDC5/BDNF信号通路,但其对海马神经可塑性的影响及机制尚不清楚。方法:采用慢性社会失败应激(CSDS)诱导小鼠社会失败。H&E染色、高尔基染色观察海马形态变化。免疫荧光双染色检测突触素(SYN)和突触后密度蛋白-95 (PSD-95)的表达,免疫印迹法检测PSD-95、SYN和双皮质素(DCX)蛋白的表达。通过行为评估结合形态学观察,证实了社交失败的病理加工过程及QYS的治疗效果。结果:在整个研究过程中,CSDS小鼠的蔗糖偏好指数和OFT活性时间均显著降低(p≤0.05),尾悬不动时间显著增加(p≤0.05),提示小鼠存在明显的抑郁症状。QYS(25、50、100 mg/kg)可显著或显著(p≤0.05或p≤0.01)降低CSDS小鼠的悬尾不动时间,增加蔗糖偏好指数和OFT活性时间的趋势,显著缓解CSDS小鼠的抑郁症状。QYS治疗还显著增加了在抑郁症中起关键作用的DCX、PSD-95和SYN蛋白的表达。结论:青叶多糖通过上调突触相关蛋白(synapse-associated protein, SAPs)的表达,增强海马神经可塑性,减轻了这些症状。QYS的治疗机制可能通过改变SAPs的表达来调节海马神经元的神经可塑性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Effects of Qingyangshen glycosides on neuroplasticity in a mouse model of social defeat

Effects of Qingyangshen glycosides on neuroplasticity in a mouse model of social defeat

Background

Qingyangshen (Cynanchum otophyllum C.K. Schneid) is a folk drug for treating depression and other mental disorders induced by social defeat stress. Neuroplasticity in the hippocampus is essential for the modulation of cognition and emotion, and its impairment may contribute to the development and progression of depression. Our previous studies have found that Qingyangshen glycosides (QYS) can improve depression-like behavior in social failure mouse models, mainly through PGC-1α/FNDC5/BDNF signaling pathways activation, but its effects and mechanisms on hippocampal neuroplasticity remain unknown.

Methods

Chronic social defeat stress (CSDS) was used to induce social defeat in mice. Morphological changes in the hippocampus were observed by H&E staining and Golgi staining. Immunofluorescence double staining was used to detect the expression of synaptophysin (SYN) and postsynaptic density protein-95 (PSD-95), while western blot was employed to evaluate PSD-95, SYN, and doublecortin (DCX) proteins. The pathological processing of social defeat and the therapeutic effects of QYS on it was confirmed through behavioral assessment associated with morphologic observation.

Results

During the whole study, the sucrose preference indices and OFT activity time of CSDS mice were significantly decreased (p ≤ 0.05), and the tail suspension immobility time was significantly increased (p ≤ 0.05), suggesting that the mice had significant depressive symptoms. Treatment with QYS (25, 50, and 100 mg/kg) significantly alleviated depressive symptoms in CSDS mice, which was demonstrated by significantly (p ≤ 0.05 or p ≤ 0.01) reducing the duration of tail-hanging immobility and increasing the tendency of sucrose preference indices and OFT activity time. QYS treatment also significantly increased the expression of DCX, PSD-95, and SYN proteins, which play a crucial role in depression.

Conclusions

QYS alleviated these symptoms by enhancing hippocampal neuroplasticity through upregulating the expression of synapse-associated proteins (SAPs). The therapeutic mechanism of QYS may involve modulating the neuroplasticity of hippocampus neurons by altering the expression of SAPs.

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