国家自然科学基金(39480008,69571014,39525009), 国家教委跨世纪优秀人才计划与北美医学基金会资助.
细胞膜片钳技术是研究膜离子通道的有效方法.在单个细胞上反复形成多次全细胞构型从而在同一细胞上观察某些药物的长时间作用对于通道膜电流的影响.利用全细胞构型下胞浆与电极内液的连通可以方便地向胞内引入药物.以此法研究MPP+多巴胺能神经瘤细胞(MN9D)的毒性作用表明MPP+导致细胞电压依赖性钙电流(ICa)显著下降;MPP+作用1 h以内高去极化电压较低去极化电压诱发的钙电流先受MPP+影响而下降; MPP+对未分化细胞的钙电流无显著作用(n=3).
Patch clamp is a useful method to study ion channels in cell membrane. By means of repatched whole cell, it becomes available to monitor the long term effect of some kinds of reagents on ion currents of a single cell without wash-out problem. After the cell was whole cell patched, drugs can be conveniently dialyzed into the cell from the pipette. The neurotoxicity of MPP+ in dopaminergic neuronal cell line (MN9D) was investigated with repatched whole-cell method. It was found that the voltage dependent calcium current (ICa) was significantly suppressed in differentiated cells and ICa induced by high depolarizing pulse decreased earlier than that induced by low depolarizing pulse during MPP+ treating for up to 1 h. In undifferentiated cells, no apparent change happened under the same condition.
蔡东,王晓民,瞿安连,韩松平,于英心,周专,康华光,韩济生.重复膜片钳法研究MPP+对神经元钙电流作用[J].生物化学与生物物理进展,1999,26(2):158-161
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