Patt S, Schmidt H, Labrakakis C, Weydt P, Fritsch M, Cervós-Navarro J, Kettenmann H
Free University of Berlin, Germany.
Acta Neuropathol. 1996;91(2):209-214. doi: 10.1007/s004010050416.
Central neurocytoma is a rare brain tumor composed of small round synaptophysin-positive cells, suggesting a neuronal origin of these tumor cells. Glial properties are inferred, however, from the observation that the tumor cells exhibit a strong morphological similarity to oligodendroglioma cells and show an astrocytic differentiation in vitro. To test for neuronal or glial physiological properties, we studied cultured neurocytoma cells derived from a surgical specimen from a 44-year-old man, employing the patch-clamp technique. Early primary cultures were composed of morphologically unique bi- or multipolar cells which were positive for synaptophysin and negative for the astrocyte marker glial fibrillary acidic protein. In the majority of these cells, whole-cell membrane current recordings revealed physiological properties of neurons, i.e., a high density of Na+ currents, the capacity to generate action potentials, and the expression of inotropic neurotransmitter receptors. Metabotropic neurotransmitter receptors could be demonstrated by Ca2+ imaging techniques. The remaining bi- or multipolar cells and almost all cells in later culture stages and in vitro passage lacked these neuronal properties and showed physiological features characteristic of glial cells. We conclude that the major population of neurocytoma cells shows physiological properties of neurons and that with time in culture this population is replaced by electrically passive cells.
中枢神经细胞瘤是一种罕见的脑肿瘤,由小圆形突触素阳性细胞组成,提示这些肿瘤细胞起源于神经元。然而,从肿瘤细胞与少突胶质细胞瘤细胞形态高度相似且在体外表现出星形胶质细胞分化的观察结果可推断其具有神经胶质特性。为了检测神经元或神经胶质的生理特性,我们采用膜片钳技术研究了来自一名44岁男性手术标本的培养神经细胞瘤细胞。早期原代培养物由形态独特的双极或多极细胞组成,这些细胞突触素呈阳性,星形胶质细胞标志物胶质纤维酸性蛋白呈阴性。在这些细胞中的大多数,全细胞膜电流记录显示出神经元的生理特性,即高密度的Na+电流、产生动作电位的能力以及离子型神经递质受体的表达。代谢型神经递质受体可通过Ca2+成像技术证实。其余的双极或多极细胞以及后期培养阶段和体外传代中的几乎所有细胞都缺乏这些神经元特性,并表现出神经胶质细胞特有的生理特征。我们得出结论,神经细胞瘤细胞的主要群体表现出神经元的生理特性,并且随着培养时间的推移,这一群体被电活动不活跃的细胞所取代。