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氧化双(三丁基锡)诱导的汗腺毒性:超微结构与X射线微分析研究

Sweat gland toxicity induced by bis (tributyltin) oxide: an ultrastructural and X-ray microanalysis study.

作者信息

Yamamoto O, Doi Y, Kudo H, Yoshizuka M, Fujimoto S

机构信息

Department of Dermatology and Occupational Dermatopathology, School of Medicine, University of Occupational and Environmental Health, Kitakyushu, Japan.

出版信息

Arch Toxicol. 2000 Dec;74(10):627-31. doi: 10.1007/s002040000174.

Abstract

Acute toxicity of bis (tributyltin) oxide in the sweat glands in the rat footpad was investigated by electron microscopy and an energy-dispersive X-ray microanalyzer. Male Wistar rats received an intramuscular injection of 0.5 ml/kg bis (tributyltin) oxide. After 6-8 h, swelling of mitochondria appeared in the secretory cells of the sweat glands. After 12 h, the secretory cells began to show intracytoplasmic edema. After 16-20 h, secretory cells in some sweat glands showed marked hydropic degeneration with swollen cytoplasm. Using X-ray microanalysis, tin peaks were preferentially obtained from the swollen mitochondria of the affected secretory cells. Mitochondria dysfunction due to the toxic effects of bis (tributyltin) oxide induced changes in the secretory cells of rat sweat glands. After 24-48 h, the secretory portion of the sweat glands contained three types of cells: degenerating dark cells, regenerating cells carrying injured mitochondria, and light cells which were morphologically very similar to the cells in the transitional portion of the sweat gland. These light cells appeared to differentiate into active secretory cells after settling down in the secretory portion. Based on these observations, we concluded that the cells in the transitional portion could play an important role at least as reserve cells against secretory cell toxicity. In association with the regenerating process of the damaged secretory portions, increased mitotic activities were seen in different areas of all the dermal sweat ducts. The above-mentioned morphological observations for cell damage and subsequent regeneration and renewal ofsecretory cells in sweat gland intoxication have not been reported so far.

摘要

通过电子显微镜和能量色散X射线微分析仪研究了氧化双(三丁基锡)对大鼠足垫汗腺的急性毒性。雄性Wistar大鼠肌肉注射0.5 ml/kg氧化双(三丁基锡)。6-8小时后,汗腺分泌细胞中的线粒体出现肿胀。12小时后,分泌细胞开始出现胞质水肿。16-20小时后,一些汗腺的分泌细胞出现明显的水样变性,细胞质肿胀。使用X射线微分析,在受影响的分泌细胞肿胀的线粒体中优先获得锡峰。氧化双(三丁基锡)的毒性作用导致线粒体功能障碍,进而引起大鼠汗腺分泌细胞的变化。24-48小时后,汗腺的分泌部包含三种类型的细胞:退化的暗细胞、携带受损线粒体的再生细胞以及形态上与汗腺过渡部细胞非常相似的亮细胞。这些亮细胞在定居于分泌部后似乎分化为活跃的分泌细胞。基于这些观察结果,我们得出结论,过渡部的细胞至少可以作为抵抗分泌细胞毒性的储备细胞发挥重要作用。与受损分泌部的再生过程相关,在所有真皮汗腺导管的不同区域均可见有丝分裂活性增加。迄今为止,尚未报道过关于汗腺中毒时细胞损伤以及随后分泌细胞再生和更新的上述形态学观察结果。

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