Puranik Chaitanya P, Ryan Kathleen A, Yin Zhaoyu, Martinez-Mier E Angeles, Preisser John S, Everett Eric T
Oral Biology PhD Curriculum, Gillings School of Global Public Health, University of North Carolina at Chapel Hill, Chapel Hill, N.C., USA.
Cells Tissues Organs. 2015;200(6):413-23. doi: 10.1159/000438699. Epub 2015 Sep 19.
The study objective was to investigate the effects of fluoride on intact parathyroid hormone (iPTH) secretion. Thyro-parathyroid complexes (TPC) from C3H (n = 18) and B6 (n = 18) mice were cultured in Ca²⁺-optimized medium. TPC were treated with 0, 250, or 500 µM NaF for 24 h and secreted iPTH assayed by ELISA. C3H (n = 78) and B6 (n = 78) mice were gavaged once with distilled or fluoride (0.001 mg [F⁻]/g of body weight) water. At serial time points (0.5-96 h) serum iPTH, fluoride, total calcium, phosphorus, and magnesium levels were determined. Expression of genes involved in mineral regulation via the bone-parathyroid-kidney (BPK) axis, such as parathyroid hormone (Pth), calcium-sensing receptor (Casr), vitamin D receptor (Vdr), parathyroid hormone-like hormone (Pthlh), fibroblast growth factor 23 (Fgf23), α-Klotho (αKlotho), fibroblast growth factor receptor 1c (Fgf1rc), tumor necrosis factor 11 (Tnfs11), parathyroid hormone receptor 1 (Pth1r), solute carrier family 34 member 1 (Slc34a1), solute carrier 9 member 3 regulator 1 (Slc9a3r1), chloride channel 5 (Clcn5), and PDZ domain-containing 1 (Pdzk1), was determined in TPC, humeri, and kidneys at 24 h. An in vitro decrease in iPTH was seen in C3H and B6 TPC at 500 µM (p < 0.001). In vivo levels of serum fluoride peaked at 0.5 h in both C3H (p = 0.002) and B6 (p = 0.01). In C3H, iPTH decreased at 24 h (p < 0.0001), returning to baseline at 48 h. In B6, iPTH increased at 12 h (p < 0.001), returning to baseline at 24 h. Serum total calcium, phosphorus, and magnesium levels did not change significantly. Pth, Casr,αKlotho,Fgf1rc,Vdr, and Pthlh were significantly upregulated in C3H TPC compared to B6. In conclusion, the effects of fluoride on TPC in vitro were equivalent between the 2 mouse strains. However, fluoride demonstrated an early strain-dependent effect on iPTH secretion in vivo. Both strains demonstrated differences in the expression of genes involved in the BPK axis, suggesting a possible role in the physiologic handling of fluoride.
本研究的目的是调查氟化物对完整甲状旁腺激素(iPTH)分泌的影响。将来自C3H(n = 18)和B6(n = 18)小鼠的甲状腺 - 甲状旁腺复合体(TPC)在钙优化培养基中培养。TPC用0、250或500 μM氟化钠处理24小时,并通过酶联免疫吸附测定法(ELISA)检测分泌的iPTH。给C3H(n = 78)和B6(n = 78)小鼠一次性灌胃蒸馏水或含氟(0.001 mg [F⁻]/g体重)的水。在连续时间点(0.5 - 96小时)测定血清iPTH、氟化物、总钙、磷和镁水平。在24小时时,测定TPC、肱骨和肾脏中通过骨 - 甲状旁腺 - 肾脏(BPK)轴参与矿物质调节的基因表达,如甲状旁腺激素(Pth)、钙敏感受体(Casr)、维生素D受体(Vdr)、甲状旁腺激素样激素(Pthlh)、成纤维细胞生长因子23(Fgf23)、α - Klotho(αKlotho)、成纤维细胞生长因子受体1c(Fgf1rc)、肿瘤坏死因子11(Tnfs11)、甲状旁腺激素受体1(Pth1r)、溶质载体家族34成员1(Slc34a1)、溶质载体9成员3调节剂1(Slc9a3r1)、氯离子通道5(Clcn5)和含PDZ结构域的1(Pdzk1)。在C3H和B6 TPC中,500 μM时可见iPTH在体外减少(p < 0.001)。在体内,C3H(p = 0.002)和B6(p = 0.01)小鼠的血清氟化物水平在0.5小时达到峰值。在C3H中,iPTH在24小时时下降(p < 0.0001),在48小时恢复到基线。在B6中,iPTH在12小时时升高(p < 0.001),在24小时恢复到基线。血清总钙、磷和镁水平无显著变化。与B6相比,C3H TPC中的Pth、Casr、αKlotho、Fgf1rc、Vdr和Pthlh显著上调。总之,氟化物对TPC的体外作用在两种小鼠品系之间是等效的。然而,氟化物在体内对iPTH分泌表现出早期品系依赖性作用。两种品系在参与BPK轴的基因表达上均存在差异,提示其在氟化物生理处理中可能发挥作用。