Cancalon P
Tissue Cell. 1983;15(2):245-58. doi: 10.1016/0040-8166(83)90020-4.
The olfactory mucosa of the catfish (Ictulurus punctatus) has been briefly exposed to various concentrations of the non-ionic detergent Triton X-100. At high concentrations (1-4%) the upper layer of cells constituting the sensory and non-sensory areas of the lamellae is extensively damaged and new receptor cells do not appear in significant number before 2 months after treatment. Respiratory cells regenerate first followed by sustentacular and olfactory receptors. The regenerative process is very similar to that described previously after prolonged contact between the mucosa and ZnSO4. Low detergent concentrations 0.03-0.1% affect only the sensory area. Olfactory and sustentacular microvilli and cilia, are immediately severed by the chemical. Regeneration occurs within the next 4 days. The cellular membranes appear also to be affected. From anatomical, electrophysiological and biochemical studies both in vivo and in vitro, it can be hypothesized that a receptors involved in the transduction process are solubilized by the detergent but reappear at a level corresponding to 50-60% of their original activity within 2 h. Proteins, having an amino acid binding effectiveness correlated to the amino acid electrophysiological activities measured in vivo, can be isolated from the solubilized material. Further studies will be necessary to confirm that some of these molecules are involved in the olfactory transduction mechanism.
斑点叉尾鮰(Ictulurus punctatus)的嗅黏膜已被短暂暴露于不同浓度的非离子型去污剂吐温X-100中。在高浓度(1%-4%)下,构成鳃小片感觉区和非感觉区的上层细胞受到广泛损伤,并且在处理后2个月内新的受体细胞数量才会显著增加。呼吸细胞最先再生,随后是支持细胞和嗅觉受体。再生过程与之前黏膜与硫酸锌长期接触后所描述的过程非常相似。低浓度去污剂(0.03%-0.1%)仅影响感觉区。嗅觉和支持细胞的微绒毛和纤毛会立即被化学物质切断。在接下来的4天内会发生再生。细胞膜似乎也受到影响。通过体内和体外的解剖学、电生理学和生物化学研究,可以推测参与转导过程的受体被去污剂溶解,但在2小时内会以相当于其原始活性50%-60%的水平重新出现。可以从溶解的物质中分离出具有与体内测量的氨基酸电生理活性相关的氨基酸结合效力的蛋白质。需要进一步研究以证实这些分子中的一些参与嗅觉转导机制。