Ishizuya-Oka A, Shimozawa A
Department of Anatomy, School of Medicine, Dokkyo University, Tochigi, Japan.
J Morphol. 1990 Jul;205(1):9-15. doi: 10.1002/jmor.1052050103.
The binding of seven lectins (concanavalin A, Con A; Dolichos biflorus agglutinin, DBA; peanut agglutinin, PNA; Ricinus communis agglutinin I, RCA-I; soybean agglutinin, SBA; Ulex europeus agglutinin, UEA-I; and wheat germ agglutinin, WGA) to the small intestine in metamorphosing Xenopus laevis was studied by the avidin-biotin-peroxidase (ABC) method. The staining pattern of the epithelium with all lectins except for UEA-I and Con A changed gradually during metamorphic climax; the main component of the epithelium, absorptive cells, gradually became positive for DBA, PNA, and SBA and the scattered goblet cells for RCA-I and WGA. On the other hand, the change of the staining pattern in the connective tissue occurred only for Con A, RCA-I, and WGA, and this change took place rapidly at the beginning of climax (stage 60). Increased staining for Con A and WGA at stage 60 was observed only in a group of connective tissue cells close to the epithelium and in the basement membrane. As metamorphosis progressed, this localization of the staining intensity became less clear. At the completion of metamorphosis (stage 66), the absorptive cells were stained with all lectins except for UEA-I, whereas the goblet cells stained only with RCA-I and WGA. These results indicate that lectin histochemistry can distinguish between larval and adult cells of both two epithelial types (absorptive and goblet cells). The technique may also identify a group of connective tissue cells, close to the epithelium, that possibly induce the metamorphic epithelial changes.
采用抗生物素蛋白-生物素-过氧化物酶(ABC)法研究了七种凝集素(刀豆球蛋白A,Con A;双花扁豆凝集素,DBA;花生凝集素,PNA;蓖麻凝集素I,RCA-I;大豆凝集素,SBA;欧洲荆豆凝集素,UEA-I;小麦胚凝集素,WGA)与非洲爪蟾变态过程中小肠的结合情况。除UEA-I和Con A外,所有凝集素对上皮的染色模式在变态高峰期逐渐变化;上皮的主要成分吸收细胞逐渐对DBA、PNA和SBA呈阳性,而散在的杯状细胞对RCA-I和WGA呈阳性。另一方面,结缔组织中染色模式的变化仅发生在Con A、RCA-I和WGA,这种变化在高峰期开始时(第60阶段)迅速发生。在第60阶段观察到Con A和WGA染色增加,仅在靠近上皮的一组结缔组织细胞和基底膜中出现。随着变态的进展,这种染色强度的定位变得不那么清晰。在变态完成时(第66阶段),除UEA-I外,所有凝集素均可使吸收细胞染色,而杯状细胞仅被RCA-I和WGA染色。这些结果表明,凝集素组织化学可以区分两种上皮类型(吸收细胞和杯状细胞)的幼虫和成虫细胞。该技术还可能识别出一组靠近上皮的结缔组织细胞,它们可能诱导上皮的变态变化。