College of Life Sciences, Shaanxi Normal University, Xi'an, 710062, People's Republic of China.
Ecotoxicology. 2013 Sep;22(7):1123-32. doi: 10.1007/s10646-013-1099-0. Epub 2013 Aug 10.
This study examined the effects of chronic fluoride exposure on metamorphosis, thyroid and skeletal development in tadpoles of Chinese Toad, Bufo gargarizans. The tadpoles were exposed to fluoride concentrations either at 0, 1, 5, 10, or at 50 mg L(-1) from Gosner stage 26 to Gosner stage 42. Body weight, total length and percentage of tadpoles reaching metamorphosis climax were recorded, and thyroid histological examinations were employed. In addition, mRNA expression of both deiodinase type 2 (D2) and deiodinase type 3 (D3) was analyzed by using RT-PCR and skeletal systems were investigated by using double-staining methodology at stage 42. Results showed that total length and body weight were unaffected by fluoride exposure at all concentrations while metamorphosis was strongly inhibited only by 50 mg L(-1) fluoride. Histomorphological measurements showed the percentage of colloid depletion in thyroid gland increased significantly, while the average diameter of follicles was significantly shorter at 50 mg L(-1) concentration. In addition, fluoride at 5 mg L(-1) can stimulate bone mineralization, while fluoride at 50 mg L(-1) can retard deposition of calcium. In conclusion, our study suggests that 50 mg L(-1) fluoride could damage follicular cells in thyroid gland and induce a sharp reduction in thyroid hormone probably through the up-regulation of D3 mRNA expression, and these influences on thyroid system may delay metamorphosis as well as ossification in bone tissue by inhibiting calcium deposition.
本研究探讨了慢性氟暴露对中华蟾蜍(Bufo gargarizans)蝌蚪变态、甲状腺和骨骼发育的影响。蝌蚪从 Gosner 26 期到 Gosner 42 期分别暴露于 0、1、5、10 或 50mg/L 的氟化物浓度下。记录了蝌蚪的体重、全长和达到变态高峰的百分比,并进行了甲状腺组织学检查。此外,还通过 RT-PCR 分析了脱碘酶 2(D2)和脱碘酶 3(D3)的 mRNA 表达,并在 42 期通过双重染色法研究了骨骼系统。结果表明,所有浓度的氟化物暴露均未影响全长和体重,而只有 50mg/L 的氟化物强烈抑制了变态。组织形态学测量显示,甲状腺中胶体耗竭的百分比显著增加,而在 50mg/L 浓度下滤泡的平均直径显著变短。此外,5mg/L 的氟化物可以刺激骨矿化,而 50mg/L 的氟化物可以延迟钙的沉积。总之,本研究表明,50mg/L 的氟化物可能会损伤甲状腺滤泡细胞,并通过上调 D3 mRNA 表达导致甲状腺激素急剧减少,这些对甲状腺系统的影响可能会通过抑制钙沉积而延迟变态和骨骼组织的骨化。