Müller T, Reutter K
Department of Anatomy, University of Mainz, Germany.
Anat Embryol (Berl). 1995 Dec;192(6):537-45. doi: 10.1007/BF00187184.
Electron microscopical data regarding methylene blue staining of taste buds in the epithelia of the goldfish lip and the cirumvallate papilla of the mouse tongue after supravital dye application are presented for the first time. The ultrastructural details were compared with the corresponding light microscopical findings. The dye was applied in different concentrations by injection or in crystalline from directly to the surface of the tissues. Both methylene blue and tissue were simultaneously fixed by immersion in a paraformaldehyde-glutaraldehyde solution with the addition of phosphomolybdic acid. The ensuing dye precipitate was further stabilized by ammonium heptamolybdate. On the light microscopical level, the taste bud's receptive structures, i.e. the receptor area (fish) and the taste pit (mouse), exhibited the highest affinity for the dye. Additionally, the mucous material within the trenches around the circumvallate papillae in mice was intensely stained. On the electron microscopical level, the cationic phenothiazine dye bound to the receptor villi or to the mucus coating the receptive structures. In the case of higher dye concentrations, a staining of single taste bud cells took place starting apically and proceeding down to the base. Dye accumulations within the intercellular clefts between the epithelial cells or within other structures were observed only if the dye concentration was further increased. Since similar results were also obtained with the cationic phenazo dye Janus green, dye accumulation in the mucus covering the receptor villi may be representative of the general binding of organic cations, which are known to induce bitter taste sensations.
首次呈现了关于在活体染色后金鱼唇部上皮和小鼠舌轮廓乳头味蕾亚甲蓝染色的电子显微镜数据。将超微结构细节与相应的光学显微镜观察结果进行了比较。通过注射不同浓度的染料或直接将结晶染料应用于组织表面。亚甲蓝和组织通过浸入添加了磷钼酸的多聚甲醛 - 戊二醛溶液中同时固定。随后的染料沉淀通过七钼酸铵进一步稳定。在光学显微镜水平上,味蕾的感受结构,即受体区域(鱼类)和味窝(小鼠),对染料表现出最高的亲和力。此外,小鼠轮廓乳头周围沟内的粘液物质被强烈染色。在电子显微镜水平上,阳离子吩噻嗪染料与受体绒毛或覆盖感受结构的粘液结合。在染料浓度较高的情况下,单个味蕾细胞从顶端开始染色并向下延伸至基部。仅当染料浓度进一步增加时,才观察到上皮细胞间裂隙或其他结构内的染料积聚。由于用阳离子偶氮染料健那绿也获得了类似结果,因此受体绒毛上覆盖的粘液中染料积聚可能代表有机阳离子的一般结合,已知有机阳离子会引发苦味感觉。