Schools Gary P, Zhou Min, Kimelberg Harold K
Center for Neuropharmacology and Neuroscience, Albany Medical College, Albany, New York 12208, USA.
J Neurosci Res. 2003 Sep 15;73(6):765-77. doi: 10.1002/jnr.10680.
We have recently described a subgroup of isolated glial fibrillary acidic protein-positive (GFAP+) hippocampal astrocytes that predominantly express outwardly rectifying currents (which we term "ORAs" for outwardly rectifying astrocytes), which are similar to the currents already described for hippocampal GFAP- "complex glia." We now report that post-recording staining of cells that were first selected as "complex" by morphology and then confirmed by their electrophysiological characteristics were NG2+ approximately 90% of the time. Also, the morphology of freshly isolated NG2+ cells differs from that of isolated GFAP+ ORAs in having a smaller and round cell body with thinner processes, which usually are collapsed back onto the soma. Upon detailed examination, NG2+ cells were found to differ quantitatively in some electrophysiological characteristics from GFAP+ ORAs. The outward, transient K+ currents (IKa) in the NG2+ cells showed a slower decay than the IKa in ORAs, and their density decreased in NG2+ cells from older animals. The other two major cation currents, the voltage-activated Na+ and outwardly delayed rectifier K+ currents, were similar in NG2+ cells and ORAs. To further distinguish isolated complex cells from outwardly rectifying GFAP+ astrocytes, we performed immunocytochemistry for glial markers in fixed, freshly isolated rat hippocampal glia. NG2+ cells were negative for GFAP and also for the astrocytic glutamate transporters GLT-1 and GLAST. Thus the isolated hippocampal NG2+ glial cells, though having an electrophysiological phenotype similar to that of ORAs, are an immunologically and morphologically distinct glial cell population and most likely represent NG2+ cells in situ.
我们最近描述了一组孤立的胶质纤维酸性蛋白阳性(GFAP+)海马星形胶质细胞亚群,这些细胞主要表达外向整流电流(我们将其称为“外向整流星形胶质细胞”的“ORAs”),这与已描述的海马GFAP-“复合胶质细胞”的电流相似。我们现在报告,最初根据形态学被选为“复合细胞”,然后通过其电生理特征得到确认的细胞,在记录后染色时约90%的时间为NG2+。此外,新鲜分离的NG2+细胞的形态与分离的GFAP+ ORAs不同,其细胞体更小、更圆,突起更细,这些突起通常会回缩到细胞体上。经过详细检查,发现NG2+细胞在一些电生理特征上与GFAP+ ORAs存在定量差异。NG2+细胞中的外向瞬态钾电流(IKa)的衰减比ORAs中的IKa慢,并且在老年动物的NG2+细胞中其密度降低。另外两种主要的阳离子电流,电压激活的钠电流和外向延迟整流钾电流,在NG2+细胞和ORAs中相似。为了进一步将分离的复合细胞与外向整流的GFAP+星形胶质细胞区分开来,我们对固定的、新鲜分离的大鼠海马胶质细胞进行了胶质细胞标志物的免疫细胞化学检测。NG2+细胞对GFAP以及星形胶质细胞谷氨酸转运体GLT-1和GLAST均呈阴性。因此,分离的海马NG2+胶质细胞虽然具有与ORAs相似的电生理表型,但却是一个在免疫和形态上不同的胶质细胞群体,很可能代表原位的NG2+细胞。