选择性培养中枢神经系统中线前体的果蝇胚胎神经元的离子电流。

Journal of neurobiology Pub Date : 2000-09-15
H Schmidt, K Lüer, W Hevers, G M Technau
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引用次数: 0

摘要

为了研究特定细胞群的电生,我们应用了一个体外系统,允许在不同条件下选择性培养单个果蝇中枢神经系统前体。从原胚期胚胎制备的中枢神经系统中线(ML)前体产生具有表达特定标记物的神经元和胶质形态的后代细胞。使用全细胞膜片钳记录,离子电流的详细描述存在于这个定义的细胞群提供。培养的ML神经元的大多数离子电流与其他培养的果蝇神经元相似,尽管它们的胚胎来源不同。它们表现出至少两个电压门控钾电流,一个电压门控钠电流,两个电压门控钙电流,并对神经递质乙酰胆碱和氨基丁酸有反应。它们在动作电位放电特性上表现出同质性,即使持续去极化也只产生单个尖峰。有趣的是,尽管电压门控钾电流的表达似乎是高度细胞自主的,但在纤维接触存在的情况下,所有其他电流的表达都发生了显著变化。
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Ionic currents of Drosophila embryonic neurons derived from selectively cultured CNS midline precursors.

In order to investigate the electrogenesis of defined cell populations, we applied an in vitro system that allows the selective culturing of individual Drosophila CNS precursors under different conditions. CNS midline (ML) precursors prepared from gastrula stage embryos gave rise to progeny cells with neuronal and glial morphology that expressed specific markers. Using whole-cell patch-clamp recordings, a detailed description of ionic currents present in this defined cell population is provided. Most ionic currents of cultured ML neurons were similar to other cultured Drosophila neurons, even though their embryonic origin is different. They displayed at least two voltage-gated potassium currents, a voltage-gated sodium, two voltage-gated calcium currents, and responded to the neurotransmitters ACh and GABA. They showed homogeneity in action potential firing properties, generating only a single spike even upon sustained depolarization. Interestingly, although the expression of the voltage-gated potassium currents appeared to be highly cell autonomous, for all other currents significant changes were observed in the presence of fiber contacts.

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