Enoki Ryosuke, Jakobs Tatjana C, Koizumi Amane
Dpt of Physiology and Biophysics, Dalhousie University Faculty of Medicine.
J Vis Exp. 2006 Nov 20(1):108. doi: 10.3791/108.
Traditionally the vertical slice and the whole-mount preparation of the retina have been used to study the function of retinal circuits. However, many of retinal neurons, such as amacrine cells, expand their dendrites horizontally, so that the morphology of the cells is supposed to be severely damaged in the vertical slices. In the whole-mount preparation, especially for patch-clamp recordings, retinal neurons in the middle layer are not easily accessible due to the extensive coverage of glial cell (Mueller cell) s endfeets. Here, we describe the novel slicing method to preserve the dendritic morphology of retinal neurons intact. The slice was made horizontally at the inner layer of the retina using a vibratome slicer after the retina was embedded in the low-temperature melting agarose gel. In this horizontal slice preparation of the retina, we studied the function of retinal neurons compared with their morphology, by using patch-clamp recording, calcium imaging technique, immunocytochemistry, and single-cell RT-PCR.
传统上,视网膜的垂直切片和整装标本已被用于研究视网膜回路的功能。然而,许多视网膜神经元,如无长突细胞,其树突是水平伸展的,因此在垂直切片中这些细胞的形态可能会受到严重破坏。在整装标本中,特别是对于膜片钳记录,由于神经胶质细胞(穆勒细胞)终足的广泛覆盖,中层的视网膜神经元不易进行记录。在此,我们描述一种新的切片方法,可完整保留视网膜神经元的树突形态。在将视网膜嵌入低温熔化的琼脂糖凝胶后,使用振动切片机在视网膜内层水平切片。在这种视网膜水平切片标本中,我们通过膜片钳记录、钙成像技术、免疫细胞化学和单细胞逆转录聚合酶链反应,研究了视网膜神经元的功能及其形态。