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首页> 外文期刊>Synapse >Chronic Cerebrolysin Administration Attenuates Neuronal Abnormalities in the Basolateral Amygdala Induced by Neonatal Ventral Hippocampus Lesion in the Rat
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Chronic Cerebrolysin Administration Attenuates Neuronal Abnormalities in the Basolateral Amygdala Induced by Neonatal Ventral Hippocampus Lesion in the Rat

机译:慢性脑溶素的施用减轻了大鼠新生腹侧海马损伤所致基底外侧杏仁核的神经元异常。

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摘要

The neonatal ventral hippocampal lesion (nVHL) has emerged as a model of schizophrenia-related behavior in the rat. Our previous report demonstrated that cerebrolysin (Cbl), a neuropeptide preparation which mimics the action of endogenous neurotrophic factors on brain protection and repair, promoted recovery of dendritic and neuronal damage of the prefrontal cortex and nucleus accumbens and behavioral improvements in postpubertal nVHL rats. We recently demonstrated that nVHL animals exhibit dendritic atrophy and spine loss in the basolateral amygdala (BLA). This study aimed to determine whether Cbl treatment was capable of reducing BLA neuronal alterations observed in nVHL rats. The morphological evaluation included examination of dendrites using the Golgi-Cox procedure and stereology to quantify the total cell number in BLA. Golgi-Cox staining revealed that nVHL induced dendritic retraction and spine loss in BLA pyramidal neurons. Stereological analysis demonstrated nVHL also produced a reduction in cells in BLA. Interestingly, repeated Cbl treatment ameliorated dendritic pathology and neuronal loss in the BLA of the nVHL rats. Our data show that Cbl may foster recovery of BLA damage in postpubertal nVHL rats and suggests that the use of neurotrophic agents for the management of some schizophrenia-related symptoms may present an alternative therapeutic pathway in these disorders.
机译:新生儿腹侧海马病变(nVHL)已成为大鼠精神分裂症相关行为的模型。我们先前的研究表明,脑溶素(Cbl)是一种模拟内源性神经营养因子对脑保护和修复作用的神经肽制剂,可促进青春期后nVHL大鼠前额叶皮层和伏隔核的树突和神经元损伤的恢复,并改善行为。我们最近证明nVHL动物在基底外侧杏仁核(BLA)中表现出树突状萎缩和脊柱丢失。这项研究旨在确定Cbl治疗是否能够减少nVHL大鼠中观察到的BLA神经元改变。形态学评估包括使用高尔基-柯克斯(Golgi-Cox)程序检查树突并进行立体定位以量化BLA中的总细胞数。高尔基-科克斯染色显示nVHL诱导BLA锥体神经元的树突回缩和脊柱丢失。体视学分析表明,nVHL还导致BLA细胞减少。有趣的是,重复的Cbl治疗改善了nVHL大鼠BLA中的树突状病理和神经元丢失。我们的数据表明,Cbl可能促进青春期后nVHL大鼠BLA损伤的恢复,并表明使用神经营养剂治疗某些精神分裂症相关症状可能是这些疾病的另一种治疗途径。

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