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首页> 外文期刊>Life sciences >Striatal transplants prevent AF64A-induced retention deficits.
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Striatal transplants prevent AF64A-induced retention deficits.

机译:纹状体移植可预防AF64A引起的保留缺陷。

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The relevance of the cholinergic system in mnemonic processes has been repeatedly demonstrated. In addition to the cholinergic systems that project to the telencephalon, there are subcortical nuclei with intrinsic cholinergic cells which appear to be involved in memory consolidation; among these is the striatum. Intrastriatal administration of anticholinergic drugs, as well as excitotoxic and electrolytic lesions have been shown to disrupt the acquisition and retention of instrumentally conditioned behaviors. In the present study male Wistar rats were used to confirm the reported detrimental effects of striatal lesions produced by the cholinotoxin AF64A on long-term retention (LTR) of inhibitory avoidance and spontaneous locomotor activity, to determine its effects on short-term retention (STR) and to investigate whether intrastriatal homotopic transplants can reverse the AF64A-induced behavioral deficits. AF64A-striatal lesions did not interfere with STR but disrupted LTR of the inhibitory avoidance task, and striatal transplants prevented this deficit. Spontaneous locomotor activity increased after the lesion but promptly returned to baseline levels. These results support previous findings showing striatal involvement in long-term but not short-term retention and indicate that homotopic transplants induce behavioral recovery of a learning task in striatal lesioned rats.
机译:胆碱能系统在记忆过程中的相关性已被反复证明。除了投射到端脑的胆碱能系统外,皮层下核还具有内在的胆碱能细胞,似乎参与了记忆巩固。其中有纹状体。纹状体内给予抗胆碱能药物以及兴奋性毒性和电解性损伤已显示出破坏了仪器调节行为的获得和保持。在本研究中,雄性Wistar大鼠用于证实胆碱毒素AF64A产生的纹状体损害对抑制性避免的长期保留(LTR)和自发运动活性的有害影响,以确定其对短期保留(STR)的影响),并调查纹状体内同种异体移植能否逆转AF64A诱导的行为缺陷。 AF64A-纹状体病变不会干扰STR,但会破坏抑制回避任务的LTR,纹状体移植可预防这种缺陷。病变后自发运动能力增强,但很快恢复到基线水平。这些结果支持以前的发现,表明纹状体参与长期保留而不是短期保留,并且表明同位移植可诱导纹状体病变大鼠的学习任务行为恢复。

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