Billups B, Szatkowski M, Rossi D, Attwell D
Department of Physiology, University College London, England.
Methods Enzymol. 1998;296:617-32. doi: 10.1016/s0076-6879(98)96044-x.
We have described how a combination of electrical, ion-sensing, and glutamate-sensing techniques has advanced our understanding of glutamate uptake into isolated salamander retinal glial cells. The next steps in understanding glutamate transport will inevitably depend strongly on molecular biological methods, as described elsewhere in this book, but will also require more detailed study of transporters in their normal environment, perhaps by using patch-clamping or imaging techniques to study cells in situ.
我们已经描述了电学、离子传感和谷氨酸传感技术的结合如何推动了我们对谷氨酸摄取到分离的蝾螈视网膜神经胶质细胞过程的理解。正如本书其他地方所描述的,理解谷氨酸转运的下一步将不可避免地在很大程度上依赖于分子生物学方法,但也需要在其正常环境中对转运体进行更详细的研究,或许可以通过使用膜片钳或成像技术来原位研究细胞。