Fischer Andy J, Skorupa Dana, Schonberg David L, Walton Nathaniel A
Department of Neuroscience, Ohio State University, Columbus, 43210, USA.
J Comp Neurol. 2006 Jun 1;496(4):479-94. doi: 10.1002/cne.20937.
We recently identified large glucagon-expressing neurons that densely ramify neurites in the peripheral edge of the retina and regulate the proliferation of progenitors in the circumferential marginal zone (CMZ) of the postnatal chicken eye (Fischer et al. [2005] J Neurosci 25:10157-10166). However, nothing is known about the transmitters and proteins that are expressed by the glucagon-expressing neurons in the avian retina. We used antibodies to cell-distinguishing markers to better characterize the different types of glucagon-expressing neurons. We found that the large glucagon-expressing neurons were immunoreactive for substance P, neurofilament, Pax6, AP2alpha, HuD, calretinin, trkB, and trkC. Colocalization of glucagon and substance P in the large glucagon-expressing neurons indicates that these cells are the "bullwhip cells" that have been briefly described by Ehrlich et al. ([1987] J Comp Neurol 266:220-233). Similar to the bullwhip cells, the conventional glucagon-expressing amacrine cells were immunoreactive for calretinin, HuD, Pax6, and AP2alpha. Unlike bullwhip cells, the conventional glucagon-expressing amacrine cells were immunoreactive for GABA. While glucagon-immunoreactive amacrine cells were negative for substance P in central regions of the retina, a subset of this type of amacrine cell was immunoreactive for substance P in far peripheral regions of the retina. An additional type of glucagon/substance P-expressing neuron, resembling the bullwhip cells, was found in far peripheral and dorsal regions of the retina. Based on morphology, distribution within the retina, and histological markers, we conclude that there may be four different types of glucagon-expressing neurons in the avian retina.
我们最近发现了大量表达胰高血糖素的神经元,这些神经元在视网膜的外周边缘密集地发出神经突,并调节出生后鸡眼圆周边缘区(CMZ)中祖细胞的增殖(Fischer等人,[2005]《神经科学杂志》25:10157 - 10166)。然而,关于禽类视网膜中表达胰高血糖素的神经元所表达的递质和蛋白质,我们一无所知。我们使用针对细胞区分标志物的抗体,以更好地表征不同类型的表达胰高血糖素的神经元。我们发现,大型表达胰高血糖素的神经元对P物质、神经丝、Pax6、AP2α、HuD、钙视网膜蛋白、trkB和trkC具有免疫反应性。在大型表达胰高血糖素的神经元中,胰高血糖素和P物质的共定位表明这些细胞就是Ehrlich等人([1987]《比较神经学杂志》266:220 - 233)曾简要描述过的“鞭状细胞”。与鞭状细胞相似,传统的表达胰高血糖素的无长突细胞对钙视网膜蛋白、HuD、Pax6和AP2α具有免疫反应性。与鞭状细胞不同的是,传统的表达胰高血糖素的无长突细胞对GABA具有免疫反应性。虽然在视网膜中央区域,表达胰高血糖素的无长突细胞对P物质呈阴性,但在视网膜最外周区域,这类无长突细胞的一个亚群对P物质具有免疫反应性。在视网膜的最外周和背侧区域发现了另一种表达胰高血糖素/P物质的神经元,类似于鞭状细胞。基于形态学、在视网膜内的分布以及组织学标志物,我们得出结论,禽类视网膜中可能存在四种不同类型的表达胰高血糖素的神经元。