脉络膜丛室管膜细胞在体外促进海马神经元的神经突生长。

Kazushi Kimura, Naoya Matsumoto, Masaaki Kitada, Akira Mizoguchi, Chizuka Ide
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引用次数: 27

摘要

当将脉络膜丛移植到成年大鼠脊髓中时,已知脉络膜丛室管膜细胞(cpec)促进轴突生长。本研究旨在探讨cpec是否能促进体外中枢神经系统神经元的轴突生长。海马神经元在CPEC单层上共培养。24小时后,与聚l -赖氨酸(PLL)包被板和星形胶质细胞单层共培养物比较,用各种参数评估神经突的延伸。初级神经突长度和总神经突长度在与cpec共培养中最长。cpec培养的原代神经突数量和分支数量比pll包覆板培养的多,但与星形胶质细胞共培养的数量几乎相同。接下来,我们研究了24小时内发生的神经突扩展促进作用主要是由于与cpec接触还是cpec分泌到培养基中的因子。用乙醇固定杀死CPEC单层膜,并在其上培养神经元。与在活体cpec上共培养的情况一样,神经元延伸出具有复杂分支的长神经突。另一方面,cpec条件培养基对海马神经元神经突生长的促进作用较弱。这些结果表明,cpec具有促进体外CNS神经元神经突生长的能力,并且cpec的表面质膜结合成分在当前共培养系统中强烈促进神经突生长。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Neurite outgrowth from hippocampal neurons is promoted by choroid plexus ependymal cells in vitro.

Choroid plexus ependymal cells (CPECs) were known to promote axonal growth when choroid plexus is grafted into the adult rat spinal cord. The present study was carried out to examine whether CPECs promote axonal outgrowth from neurons derived from the CNS in vitro. Hippocampal neurons were cocultured on CPEC monolayers. After 24 h, neurite extension was evaluated using various parameters in comparison with cultures grown on poly-L-lysine (PLL)-coated plates and cocultures grown on astrocyte monolayers. The primary neurite length and total neurite length were longest in the cocultures with CPECs. The number of primary neurites and the number of branches were larger in the cultures with CPECs than in the cultures on PLL-coated plates, but almost the same as in the cocultures with astrocytes. Next, we examined whether the neurite extension-promoting effect occurring within 24 h is due primarily to contact with the CPECs or to factors secreted by CPECs into the culture medium. The CPEC monolayers were killed by ethanol fixation, and neurons cultured on them. The neurons extended long neurites with elaborate branching, as in the case of cocultures grown on living CPECs. On the other hand, CPEC-conditioned medium exhibited less promoting effect on neurite outgrowth from hippocampal neurons. These results indicate that CPECs have a capacity to promote neurite outgrowth from CNS neurons in vitro , and that surface plasma membrane-bound components of CPECs strongly contribute to the enhancement of neurite outgrowth in the present coculture system.

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