糖缀合物和角蛋白18定义了味觉细胞的亚群。

The Histochemical Journal Pub Date : 1995-12-01
Q Zeng, A Lawton, B Oakley
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引用次数: 0

摘要

用凝集素组织化学方法对新生大鼠、正常成年大鼠和去神经成年大鼠舌进行切片检测。我们的注意力集中在味蕾内的细胞和周围的上皮细胞上。12种凝集素中的4种:欧洲紫荆(UEA-I),紫荆(BPA),双螺旋(HPA)和荷花(LTA)凝集素,观察到信息丰富的染色模式。在正常成人舌头中,BPA与舌上皮细胞结合,而舌上皮细胞与舌基底膜缺乏接触。味蕾形成后,侧边被独特的bpa阳性细胞包围。HPA和LTA分别与28%和23%的谷形/叶状味蕾间质细胞选择性反应。在双染色味蕾中,lta阳性细胞和角蛋白18阳性细胞有统计学意义上的重叠。HPA结合与角蛋白18之间的重叠更为明显:双染细胞占所有染色细胞的67%。在新生儿味蕾发育过程中,角蛋白18的合成先于HPA结合。相比之下,在成年味觉细胞的替换过程中,角蛋白18的合成和HPA的结合通常是同时进行的。角蛋白18和HPA可能识别出旧味觉受体细胞的同一子集。HPA可与角蛋白18阳性细胞表面的糖缀合物结合。在失神经的成人舌中,所有uea - i阳性或bpa阳性的表皮周围细胞的缺失表明表皮周围细胞和表皮内细胞都是神经依赖性的。
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Glycoconjugates and keratin 18 define subsets of taste cells.

Sections of neonatal, normal adult and denervated adult rat tongue were examined with lectin histochemistry. Attention was focused upon intragemmal cells (cells within the taste bud) and the surrounding perigemmal cells. Informative staining patterns were observed with four of 12 lectins: Ulex europaeus (UEA-I), Bauhinia purpurea (BPA), Helix pomatia (HPA) and Lotus tetragonolobus (LTA) agglutinins. In normal adult tongues, BPA bound to those lingual epithelial cells lacking contact with the basal lamina. After they formed, vallate taste buds were laterally surrounded by distinctive BPA-positive cells. HPA reacted selectively with 28% and LTA with 23% of the intragemmal cells in vallate/foliate taste buds. In double-stained taste buds there was a statistically significant overlap of LTA-positive cells and keratin 18-positive cells. The overlap between HPA binding and keratin 18 was more marked: double-stained cells comprized 67% of all stained cells. During taste bud development in neonates keratin 18 synthesis preceded HPA binding. In contrast, during the replacement of adult taste cells, keratin 18 synthesis and HPA binding were generally concurrent. Keratin 18 and HPA probably identify the same subset of older taste receptor cells. HPA may bind to glycoconjugates on the surface of keratin 18-positive cells. In denervated adult tongue the loss of all UEA-I-positive or BPA-positive perigemmal cells suggests that perigemmal as well as intragemmal cells are nerve-dependent.

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