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Fluoride Toxicity and Status of Serum Thyroid Hormones, Brain Histopathology, and Learning Memory in Rats: A Multigenerational Assessment

机译:氟中毒和大鼠血清甲状腺激素,脑组织病理学和学习记忆的状态:多代评估。

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High-fluoride (100 and 200 ppm) water was administered to rats orally to study the fluoride-induced changes on the thyroid hormone status, the histopathology of discrete brain regions, the acetylcholine esterase activity, and the learning and memory abilities in multigeneration rats. Significant decrease in the serum-free thyroxine (FT4) and free triiodothyronine (FT3) levels and decrease in acetylcholine esterase activity in fluoride-treated group were observed. Presence of eosinophilic Purkinje cells, degenerating neurons, decreased granular cells, and vacuolations were noted in discrete brain regions of the fluoride-treated group. In the T-maze experiments, the fluoride-treated group showed poor acquisition and retention and higher latency when compared with the control. The alterations were more profound in the third generation when compared with the first- and second-generation fluoride-treated group. Changes in the thyroid hormone levels in the present study might have imbalanced the oxidant/antioxidant system, which further led to a reduction in learning memory ability. Hence, presence of generational or cumulative effects of fluoride on the development of the offspring when it is ingested continuously through multiple generations is evident from the present study.
机译:口服高氟水(100和200 ppm)给大鼠以研究氟化物引起的甲状腺激素状态,离散脑区组织病理学,乙酰胆碱酯酶活性以及多代大鼠的学习和记忆能力的变化。观察到氟化物治疗组的无血清甲状腺素(FT4)和游离三碘甲状腺素(FT3)水平显着降低,乙酰胆碱酯酶活性降低。在氟化物治疗组的离散脑区域中发现嗜酸性浦肯野细胞,神经元变性,颗粒细胞减少和空泡化。在T迷宫实验中,与对照组相比,氟化物治疗组表现出较差的采集和保留能力,潜伏期更长。与第一代和第二代氟化物治疗组相比,第三代的变化更为深刻。本研究中甲状腺激素水平的变化可能使氧化剂/抗氧化剂系统失衡,从而进一步导致学习记忆能力下降。因此,从本研究中可以明显看出,当氟化物被多代连续摄入时,其对子代发育的代际或累积效应存在。

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