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Mercuric chloride induced toxicity responses in the olfactory epithelium of Labeo rohita (HAMILTON): a light and electron microscopy study

机译:氯化汞诱导的Labeo rohita(HAMILTON)嗅上皮中的毒性反应:光和电子显微镜研究

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摘要

Bioaccumulation of mercury and histomorphological changes in the olfactory epithelium of Labeo rohita were investigated after exposing the fish to two sublethal concentrations of HgCl2 (66 and 132 mu g/L) for 15 and 30 days. Mercury deposition increased in the tissue significantly (p < 0.05) with dose- and duration-dependent manner. Severe damage to the olfactory epithelium was evident. When fish exposed to 66 mu g/L for 15 days, the histology of olfactory epithelium exhibited that mucous cell proliferation was upregulated and cell size was significantly increased from the control. Similar trends were found in 30 days exposure in both treated groups. Histology showed that mercury induced degeneration of columnar sensory cells, supporting cells and ciliated non-sensory cells and induced basal cell proliferation. Basal cell hyperplasia led to form intraepithelial proliferative lesion, thickening of epithelium, basal lamina disruption and cyst formation. Scanning electron microscopy revealed that mercury exposure at 66 mu g/L caused clumping and loss of cilia, erosion in microridges on the supporting cells and proliferation of mucous cell opening. Complete degeneration of ciliated cells and cyst formation was observed in the fish when exposed to 132 mu g/L HgCl2. This result suggests that prolonged exposure to mercury might cause irreversible damage to the olfactory epithelium and impair the olfactory function of fish.
机译:在将鱼暴露于两种亚致死浓度的HgCl2(66和132μg / L)分别为15和30天后,研究了Labeo rohita的汞的生物累积和嗅上皮的组织形态学变化。汞在组织中的沉积以剂量和持续时间依赖性方式显着增加(p <0.05)。嗅觉上皮受到严重损害。当鱼类暴露于66μg / L的15天后,嗅觉上皮的组织学表现为粘膜细胞增殖被上调,并且细胞大小比对照组明显增加。在两个治疗组的30天暴露中发现了相似的趋势。组织学显示,汞诱导柱状感觉细胞,支持细胞和纤毛非感觉细胞变性并诱导基底细胞增殖。基底细胞增生导致形成上皮内增生性病变,上皮增厚,基底层破坏和囊肿形成。扫描电子显微镜显示,汞暴露在66μg / L时会引起结块和纤毛损失,支持细胞上的微脊侵蚀以及粘液细胞开放性增殖。当暴露于132μg / L的HgCl2中时,在鱼中观察到纤毛细胞完全变性和囊肿形成。该结果表明,长时间暴露于汞可能会对嗅觉上皮造成不可逆转的损害,并损害鱼类的嗅觉功能。

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