Witt M, Reutter K
Institute of Anatomy, University of Tübingen, Federal Republic of Germany.
Histochemistry. 1990;94(6):617-28. doi: 10.1007/BF00271989.
Taste buds in the European catfish Silurus glanis were examined with electron microscopic lectin histochemistry. For detection of carbohydrate residues in sensory cells and adjacent epithelial cells, gold-, ferritin- and biotin-labeled lectins were used. A post-embedding procedure carried out on tissue sections embedded in LR-White was applied to differentiate between the sensory cells: The lectins from Helix pomatia (HPA) and Triticum vulgare (WGA) bound to N-acetyl-galactosamine and to N-acetylglucosamine residues occurring especially in vesicles of dark sensory cells. This indicates a secretory function of these cells. Most light sensory cells--with some exceptions, probably immature cells--, are HPA-negative. The mucus of the receptor field and at the top of the adjacent epithelial cells was strongly HPA-positive. Pre-embedding studies were performed in order to obtain information about the reaction of the mucus with lectins under supravital conditions. The mucus of the taste bud receptor field exhibited intensive binding to WGA, but not to the other lectins tested. Most lectins bound predominantly to the surface mucus of the nonsensory epithelium and to the marginal cells close to the receptor field. The strong lectin binding to mucins and the relatively weak lectin binding to cell surface membranes in pre-embedding studies suggest that the mucus possibly serves as a barrier which is passed selectively only by a small amount of lectins or lectin-carbohydrate complexes. Lectin-carbohydrate interactions may play a role in recognition phenomena on the plasmalemmata of the taste bud sensory cells. Recognition processes directed to bacteria or viruses should be considered as well.
利用电子显微镜凝集素组织化学技术对欧洲鲶鱼(Silurus glanis)的味蕾进行了研究。为了检测感觉细胞和相邻上皮细胞中的碳水化合物残基,使用了金标、铁蛋白标和生物素标记的凝集素。对包埋在LR-White中的组织切片进行了包埋后程序,以区分感觉细胞:来自苹果蜗牛(Helix pomatia,HPA)和普通小麦(Triticum vulgare,WGA)的凝集素与N-乙酰半乳糖胺和N-乙酰葡糖胺残基结合,这些残基尤其存在于暗感觉细胞的囊泡中。这表明这些细胞具有分泌功能。大多数明感觉细胞——有一些例外,可能是未成熟细胞——对HPA呈阴性。感受器区域以及相邻上皮细胞顶部的黏液对HPA呈强阳性。进行了包埋前研究,以获取关于黏液在活体条件下与凝集素反应的信息。味蕾感受器区域的黏液与WGA表现出强烈结合,但与其他测试的凝集素无结合。大多数凝集素主要与非感觉上皮的表面黏液以及靠近感受器区域的边缘细胞结合。包埋前研究中凝集素与黏蛋白的强结合以及与细胞表面膜的相对弱结合表明,黏液可能起到一种屏障作用,只有少量凝集素或凝集素-碳水化合物复合物能够选择性地通过。凝集素-碳水化合物相互作用可能在味蕾感觉细胞质膜上的识别现象中发挥作用。针对细菌或病毒的识别过程也应予以考虑。