Ghosh K K, Martin P R, Grünert U
Department of Physiology F13, The University of Sydney, New South Wales, Australia.
J Comp Neurol. 1997 Mar 10;379(2):211-25.
We have studied the components of the short wavelength-sensitive (SWS or "blue") cone pathway in the retina of a New World primate, the marmoset Callithrix jacchus. Of particular interest was the small bistratified ganglion cell, which has been identified in macaque monkey to be the morphological substrate of the blue-ON cell (Dacey and Lee [1994] Nature 367:731-735). Small bistratified cells were intracellularly filled with Neurobiotin in an in vitro retinal wholemount preparation. Their morphology, size, and level of dendritic stratification were similar to their homologues in macaque and human retina. A number of different antibodies were applied to vertical cryostat sections, some of which were cut through the processes of injected small bistratified or parasol ganglion cells. We used antibodies against cholecystokinin (CCK) to label blue cone bipolar cells, and antibodies against the human SWS cone photopigment to label SWS cones. Double-labelled preparations showed that blue cone bipolar cell dendrites contact SWS cone pedicles, and the inner dendrites of the small bistratified cell are costratified with the axon terminals of blue cone bipolar cells. A monoclonal antibody against calbindin was used to label a subpopulation of bipolar cells that stratifies in the outer half of the inner plexiform layer. The axon terminals of these bipolar cells occasionally cross the outer dendrites of small bistratified cells and show extensive costratification with the dendrites of OFF parasol cells. We conclude that an SWS cone pathway with similar connectivity is a preserved feature of the primate visual system.
我们研究了一种新大陆灵长类动物——狨猴(Callithrix jacchus)视网膜中短波长敏感(SWS或“蓝”)视锥细胞通路的组成部分。特别令人感兴趣的是小型双分层神经节细胞,在猕猴中已确定其为蓝ON细胞的形态学基础(达西和李[1994]《自然》367:731 - 735)。在体外视网膜整装标本中,对小型双分层细胞进行细胞内Neurobiotin填充。它们的形态、大小和树突分层水平与猕猴和人类视网膜中的同源细胞相似。将多种不同抗体应用于垂直冰冻切片,其中一些切片切过注射了Neurobiotin的小型双分层或伞状神经节细胞的突起。我们使用抗胆囊收缩素(CCK)抗体标记蓝视锥双极细胞,使用抗人类SWS视锥色素抗体标记SWS视锥细胞。双重标记标本显示,蓝视锥双极细胞的树突与SWS视锥小足接触,小型双分层细胞的内树突与蓝视锥双极细胞的轴突终末共分层。一种抗钙结合蛋白的单克隆抗体用于标记在内网状层外半部分分层的双极细胞亚群。这些双极细胞的轴突终末偶尔会穿过小型双分层细胞的外树突,并与OFF伞状细胞的树突广泛共分层。我们得出结论,具有相似连接性的SWS视锥细胞通路是灵长类视觉系统的一个保留特征。