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软体动物器官和细胞培养中的神经突生长:条件因子的作用。

Neurite outgrowth in molluscan organ and cell cultures: the role of conditioning factor(s).

作者信息

Wong R G, Hadley R D, Kater S B, Hauser G C

出版信息

J Neurosci. 1981 Sep;1(9):1008-21. doi: 10.1523/JNEUROSCI.01-09-01008.1981.

Abstract

Isolated neurons from adult central ganglia of the snail Helisoma were cultured in vitro in modified Liebowitz L-15 medium. Such neurons displayed electrical excitability comparable to that in acutely dissected ganglia. Isolated neurons remained spherical in defined medium throughout culture durations up to 2 weeks. This static morphology was contrasted by the significant neuritic outgrowth which occurred from neurons maintained in medium with co-cultured intact Helisoma brains or in brain conditioned medium. A morphological sequence of growth cone formation and neurite extension occurred only in the presence of a conditioning factor(s) with a mode of action which included tight binding of the conditioning factor to the substratum. Under these conditions, the two primary neuronal phenotypes, electrical excitability and complex neuronal architecture, could be affected independently in adult molluscan neurons cultured in vitro.

摘要

将取自蜗牛(Helisoma)成年中枢神经节的分离神经元在改良的利伯维茨L - 15培养基中进行体外培养。这些神经元表现出与急性解剖的神经节相当的电兴奋性。在长达2周的整个培养期间,分离的神经元在特定培养基中保持球形。这种静态形态与在与完整的Helisoma脑共培养的培养基中或脑条件培养基中培养的神经元发生的显著神经突生长形成对比。生长锥形成和神经突延伸的形态学序列仅在存在具有包括调节因子与底物紧密结合的作用模式的调节因子时发生。在这些条件下,在体外培养的成年软体动物神经元中,两种主要的神经元表型,即电兴奋性和复杂的神经元结构,可以独立受到影响。

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