Department of Zoology, University of British Columbia, Vancouver, British Columbia, Canada V6T 1Z4.
Acta Histochem. 2013 Mar;115(2):158-69. doi: 10.1016/j.acthis.2012.06.004. Epub 2012 Jul 4.
Carotid body glomus cells in mammals contain a plethora of different neurochemicals. Several hypotheses exist to explain their roles in oxygen-chemosensing. In the present study we assessed the distribution of serotonin, acetylcholine and catecholamines in the gills of trout (Oncorhynchus mykiss) and goldfish (Carassius auratus) using immunohistochemistry, and an activity-dependent dye, Texas Red hydrazide (TXR). In fish the putative oxygen sensing cells are neuroepithelial cells (NECs) and the focus in recent studies has been on the role of serotonin in oxygen chemoreception. The NECs of trout and goldfish contain serotonin, but, in contrast to the glomus cells of mammals, not acetylcholine or catecholamines. Acetylcholine was expressed in chain and proximal neurons and in extrinsic nerve bundles in the filaments. The serotonergic NECs did not label with the HNK-1 antibody suggesting that if they are derived from the neural crest, they are no longer proliferative or migrating. Furthermore, we predicted that if serotonergic NECs were chemosensory, they would increase their activity during hypoxia (endocytose TXR), but following 30 min of hypoxic exposure (45 Torr), serotonergic NECs did not take up TXR. Based on these and previous findings we propose several possible models outlining the ways in which serotonin and acetylcholine could participate in oxygen chemoreception in completing the afferent sensory pathway.
哺乳动物颈动脉体小球细胞含有丰富的不同神经化学物质。有几种假说解释了它们在氧化学感受中的作用。本研究采用免疫组织化学和活性依赖性染料 Texas Red 酰肼(TXR)评估了鳟鱼(Oncorhynchus mykiss)和金鱼(Carassius auratus)鳃中 5-羟色胺、乙酰胆碱和儿茶酚胺的分布。在鱼类中,拟氧感受细胞为神经上皮细胞(NECs),最近的研究重点是 5-羟色胺在氧化学感受中的作用。鳟鱼和金鱼的 NECs 含有 5-羟色胺,但与哺乳动物的小球细胞不同,不含有乙酰胆碱或儿茶酚胺。乙酰胆碱表达于神经链和近端神经元以及纤毛中的外生神经束中。 5-羟色胺能 NECs 不与 HNK-1 抗体标记,表明如果它们来源于神经嵴,它们不再增殖或迁移。此外,我们预测如果 5-羟色胺能 NECs 是化学感受细胞,它们会在缺氧时增加其活性(内吞 TXR),但在缺氧暴露 30 分钟(45 Torr)后,5-羟色胺能 NECs 不摄取 TXR。基于这些和以前的发现,我们提出了几个可能的模型,概述了 5-羟色胺和乙酰胆碱参与氧化学感受的方式,以完成传入感觉通路。