Drake-Baumann R, Seil F J
VA Medical Center and Department of Neurology, Oregon Health Sciences University, Portland 97201, USA.
Neuroscience. 1999 Jan;88(2):507-19. doi: 10.1016/s0306-4522(98)00229-2.
Previous studies have shown that exposure of organotypic cerebellar explants to cytosine arabinoside (Sigma) for the first five days in vitro drastically reduced the granule cell population and severely affected glial function. Myelination was absent and astrocytes failed to ensheath Purkinje cells. In the absence of astrocytic ensheathment, Purkinje cell somata became hyperinnervated by Purkinje cell recurrent axon collaterals. Recurrent axon collaterals also projected to Purkinje cell dendritic spines. In later studies, exposure of cerebellar cultures to a different formulation of cytosine arabinoside (Pfanstiehl) also affected granule cells and oligodendrocytes but did not compromise astrocyte function. The different susceptibility of astrocytes to the two preparations of cytosine arabinoside (Sigma and Pfanstiehl) has provided the opportunity to examine the electrophysiological properties of Purkinje cells in the presence and absence of functional glia. Ensheathed Purkinje cells in granuloprival cultures exhibit within two weeks in vitro similar passive membrane properties as Purkinje cells in control cultures. Their input resistance is significantly higher and their spontaneous single-unit discharge is significantly lower than that of unensheathed Purkinje cells. This effect suggests that ensheathed Purkinje cells in cytosine arabinoside (Pfanstiehl)-treated cultures are more responsive to the profuse Purkinje cell recurrent axon collateral inhibitory projection to dendritic spines. These studies also show that the presence of functional glia and/or astrocytic ensheathment can be correlated with the development of complex spike activity by Purkinje cells in vitro. Purkinje cells in cultures treated with cytosine arabinoside (Pfanstiehl), which does not compromise astrocytic ensheathment, display membrane conductances and spike activity similar to mature Purkinje cells in control cultures. By contrast, Purkinje cells in cultures treated with cytosine arabinoside (Sigma), and devoid of astrocytic ensheathment, display mainly simple spike activity reminiscent of the type of activity seen in less mature neurons.
先前的研究表明,在体外培养的头五天,将小脑器官型外植体暴露于阿糖胞苷(西格玛公司)中,会大幅减少颗粒细胞数量,并严重影响神经胶质细胞功能。髓鞘形成缺失,星形胶质细胞无法包裹浦肯野细胞。在没有星形胶质细胞包裹的情况下,浦肯野细胞的胞体被浦肯野细胞的回返轴突侧支过度支配。回返轴突侧支也投射到浦肯野细胞的树突棘上。在后来的研究中,将小脑培养物暴露于不同配方的阿糖胞苷(泛施泰尔公司)中,也会影响颗粒细胞和少突胶质细胞,但不会损害星形胶质细胞功能。星形胶质细胞对两种阿糖胞苷制剂(西格玛和泛施泰尔)的不同敏感性,为研究在有功能和无功能神经胶质细胞存在的情况下浦肯野细胞的电生理特性提供了机会。在颗粒细胞缺失的培养物中,被包裹的浦肯野细胞在体外两周内表现出与对照培养物中的浦肯野细胞相似的被动膜特性。它们的输入电阻明显更高,自发单单位放电明显低于未被包裹的浦肯野细胞。这种效应表明,在经阿糖胞苷(泛施泰尔)处理的培养物中,被包裹的浦肯野细胞对浦肯野细胞回返轴突侧支对树突棘的大量抑制性投射反应更敏感。这些研究还表明,功能性神经胶质细胞和/或星形胶质细胞包裹的存在与体外浦肯野细胞复杂峰电位活动的发展相关。用不损害星形胶质细胞包裹的阿糖胞苷(泛施泰尔)处理的培养物中的浦肯野细胞,表现出与对照培养物中成熟浦肯野细胞相似的膜电导和峰电位活动。相比之下,用阿糖胞苷(西格玛)处理且没有星形胶质细胞包裹的培养物中的浦肯野细胞,主要表现出简单峰电位活动,类似于在不太成熟的神经元中看到的活动类型。