Department of Molecular Pharmacology and Physiology, Morsani College of Medicine, University of South Florida, Tampa, FL, USA.
James A. Haley Veterans' Hospital, Tampa, FL, USA.
Sci Rep. 2024 Jul 23;14(1):16997. doi: 10.1038/s41598-024-67839-4.
Vitamin D is clinically used for the treatment of vitamin D deficiency or osteoporosis, partially because of its role in regulating phosphate (P) and calcium (Ca) homeostasis. The renal sodium-phosphate cotransporter 2a (Npt2a) plays an important role in P homeostasis; however, the role of vitamin D in hypophosphatemia has never been investigated. We administered vehicle or vitamin D to wild-type (WT) mice or hypophosphatemic Npt2a mice. In contrast to WT mice, vitamin D treatment increased plasma P levels in Npt2a mice, despite similar levels of reduced parathyroid hormone and increased fibroblast growth factor 23. Plasma Ca was increased ~ twofold in both genotypes. Whereas WT mice were able to increase urinary P and Ca/creatinine ratios, in Npt2a mice, P/creatinine was unchanged and Ca/creatinine drastically decreased, coinciding with the highest kidney Ca content, highest plasma creatinine, and greatest amount of nephrocalcinosis. In Npt2a mice, vitamin D treatment completely diminished Npt2c abundance, so that mice resembled Npt2a/c double knockout mice. Abundance of intestinal Npt2b and claudin-3 (tight junctions protein) were reduced in Npt2a only, the latter might facilitate the increase in plasma P in Npt2a mice. Npt2a might function as regulator between renal Ca excretion and reabsorption in response to vitamin D.
维生素 D 临床上用于治疗维生素 D 缺乏症或骨质疏松症,部分原因是其在调节磷酸盐 (P) 和钙 (Ca) 稳态中的作用。肾脏钠-磷共转运蛋白 2a (Npt2a) 在 P 稳态中发挥重要作用;然而,维生素 D 在低磷血症中的作用从未被研究过。我们给野生型 (WT) 小鼠或低磷血症 Npt2a 小鼠给予载体或维生素 D。与 WT 小鼠相比,尽管甲状旁腺激素水平降低和成纤维细胞生长因子 23 增加相似,但维生素 D 治疗增加了 Npt2a 小鼠的血浆 P 水平。两种基因型的血浆 Ca 均增加了约两倍。虽然 WT 小鼠能够增加尿磷和 Ca/肌酐比值,但在 Npt2a 小鼠中,P/肌酐不变,Ca/肌酐急剧下降,与肾脏 Ca 含量最高、血浆肌酐最高和肾钙质沉着症最多相一致。在 Npt2a 小鼠中,维生素 D 治疗完全减少了 Npt2c 的丰度,使小鼠类似于 Npt2a/c 双敲除小鼠。Npt2a 小鼠的肠道 Npt2b 和紧密连接蛋白 claudin-3(紧密连接蛋白)的丰度降低,后者可能促进 Npt2a 小鼠血浆 P 的增加。Npt2a 可能在维生素 D 作用下作为肾脏 Ca 排泄和重吸收之间的调节剂发挥作用。