Jain S, Roper S D
Department of Anatomy and Neurobiology, Colorado State University, Ft. Collins 80523.
J Comp Neurol. 1991 May 22;307(4):675-82. doi: 10.1002/cne.903070412.
Little information is currently available about which neurotransmitters are involved in signal processing in the peripheral sensory organs of taste, taste buds. Synaptic contacts between taste cells and sensory axons have long been known to exist, but what substances are active at these synapses is not known. Our objective in this study was to test for the presence of the neurotransmitter candidates, GABA, glutamate, serotonin, and histamine in taste buds of Necturus maculosus. Light microscopic immunocytochemical techniques were used to investigate the location of these substances in taste buds and surrounding epithelium. GABA and glutamate were detected in nerve fibers that innervate the taste buds, and, to a substantially lesser extent, in fine, varicose axons that penetrated the surrounding nontaste epithelium. Serotonin immunostaining was strong in basal cells in frog taste discs but was only faintly detected in Necturus taste buds. Histamine was not detected at all in taste buds. We conclude that amino acid neurotransmission may be involved in taste mechanisms and that monoamines may also play a role in chemosensory transduction in the taste bud. On the basis of our inability to detect histamine with immunocytochemical techniques, we conclude that this substance is unlikely to be a major neurotransmitter in Necturus taste buds.
目前关于哪些神经递质参与味觉外周感觉器官味蕾的信号处理的信息很少。味觉细胞与感觉轴突之间的突触联系早已为人所知,但这些突触处有哪些物质起作用尚不清楚。我们在这项研究中的目的是检测黄斑美西螈味蕾中神经递质候选物γ-氨基丁酸(GABA)、谷氨酸、血清素和组胺的存在情况。利用光学显微镜免疫细胞化学技术研究这些物质在味蕾及周围上皮中的定位。在支配味蕾的神经纤维中检测到了GABA和谷氨酸,在穿透周围非味觉上皮的细小、曲张轴突中也检测到了,但程度要小得多。血清素免疫染色在蛙味觉盘的基底细胞中很强,但在黄斑美西螈味蕾中仅微弱检测到。在味蕾中根本没有检测到组胺。我们得出结论,氨基酸神经传递可能参与味觉机制,单胺类物质也可能在味蕾的化学感觉转导中发挥作用。基于我们无法用免疫细胞化学技术检测到组胺,我们得出结论,这种物质不太可能是黄斑美西螈味蕾中的主要神经递质。