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Transplantation of Hippocampal Cell Lines Restore Spatial Learning in Rats With Ventral Subicular Lesions

机译:海马细胞系的移植恢复了大鼠腹侧亚皮膜病变的空间学习

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摘要

We have demonstrated in our previous studies that ventral subicular lesion induces neurodegeneration of the hippocampus and produces cognitive impairment in rats; In die present study, the efficacy of transplanted green fluorescent protein (GFP)-labeled hippocampal cell line (H3-GFP) cells in establishing functional recovery in ventral subicular lesioned rats has been evaluated. The survival of H3-GFP transplants and their ability to express trophic factors in vivo were also Investigated Adult male Wistar rats were subjected to selective lesioning of ventral subiculum and were transplanted with H3-GFP cells into die cornu ammonis 1 (CA1) hippocampus. The transplants sealed mainly in the dentate gyrus and expressed neurotrophic factors. brain-derived neurotrophic factor (BDNF), and basic fibroblast growth factor (bFGF) The ventral subicular lesioned (VSL) Rats with H3-GFP transplants showed enhanced expression of BDNF in the hippocampus and performed well in eight-arm radial maze and Moms water maze The VSL rats without hippocampal transplants continued to show cognitive impairments In task learning. The present study demonstrated the H3-GFP transplants mediated recovery of cognitive functions in VSL, rats. Our study supports the notion of graft meditated host regeneration and functional recovery through trophic support. although these mechanisms require further investigation
机译:在先前的研究中,我们已经证明腹侧皮下病变可诱发大鼠海马神经变性并产生认知障碍。在目前的研究中,已经评估了移植的绿色荧光蛋白(GFP)标记的海马细胞系(H3-GFP)细胞在腹侧皮损的大鼠中建立功能恢复的功效。还研究了H3-GFP移植的存活率及其在体内表达营养因子的能力。对成年雄性Wistar大鼠进行腹侧下丘脑选择性损伤,并将H3-GFP细胞移植到角膜氨化1(CA1)海马体中。移植物主要密封在齿状回中并表达神经营养因子。脑源性神经营养因子(BDNF)和碱性成纤维细胞生长因子(bFGF)带有H3-GFP移植的腹侧亚皮损(VSL)大鼠海马中BDNF的表达增强,并且在八臂放射状迷宫和妈妈水中表现良好迷宫没有海马移植的VSL大鼠在任务学习中继续表现出认知障碍。本研究表明,H3-GFP移植介导了VSL大鼠的认知功能恢复。我们的研究支持通过营养支持对移植物进行冥想的宿主再生和功能恢复的概念。尽管这些机制需要进一步调查

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