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维生素 D 甾醇通过刺激 CKD 骨骼中的成骨细胞和骨细胞成熟来增加 FGF23 的表达。

Vitamin D sterols increase FGF23 expression by stimulating osteoblast and osteocyte maturation in CKD bone.

机构信息

Department of Pediatrics, David Geffen School of Medicine at UCLA, United States of America.

Department of Orthopedic Surgery, David Geffen School of Medicine at UCLA, United States of America.

出版信息

Bone. 2019 Oct;127:626-634. doi: 10.1016/j.bone.2019.07.026. Epub 2019 Aug 1.

Abstract

Impaired osteoblast and osteocyte maturation contribute to mineralization defects and excess FGF23 expression in CKD bone. Vitamin D sterols decrease osteoid accumulation and increase FGF23 expression; these agents also increase osteoblast maturation in vitro but a link between changes in bone cell maturation, bone mineralization, and FGF23 expression in response to vitamin D sterols has not been established. We evaluated unmineralized osteoid accumulation, osteocyte maturity markers (FGF23: early osteocytes; sclerostin: late osteocytes), and osteocyte apoptosis in iliac crest of 11 pediatric dialysis patients before and after 8 months of doxercalciferol therapy. We then evaluated the effect of 1,25(OH)vitamin D on in vitro maturation and mineralization of primary osteoblasts from dialysis patients. Unmineralized osteoid accumulation decreased while numbers of early (FGF23-expressing) increased in response to doxercalciferol. Osteocyte apoptosis was low but increased with doxercalciferol. Bone FGF23 expression correlated with numbers of early, FGF23-expressing, osteocytes (r = 0.83, p < 0.001). In vitro, 1,25(OH)vitamin D increased expression of the mature osteoblast marker osteocalcin (BGLAP) but only very high (100 nM) concentrations affected in vitro osteoblast mineralization. High doses (10 and 100 nM) of 1,25(OH)vitamin D also increased the ratio of RANKL/OPG expression in CKD osteoblasts. Vitamin D sterols directly stimulate osteoblast maturation. They also increase osteocyte turnover and increase osteoblast expression of osteoclast differentiation factors, thus likely modulating osteoblast/osteoclast/osteocyte coupling. By increasing numbers of early osteocytes, vitamin D sterols increase FGF23 expression in CKD bone.

摘要

成骨细胞和骨细胞成熟受损导致 CKD 骨矿化缺陷和 FGF23 表达增加。维生素 D 甾醇可减少类骨质堆积并增加 FGF23 的表达;这些药物还可增加体外成骨细胞成熟,但尚未确定维生素 D 甾醇对骨细胞成熟、骨矿化和 FGF23 表达的变化之间的联系。我们评估了 11 例儿科透析患者接受 doxercalciferol 治疗前后 8 个月时髂嵴未矿化类骨质堆积、骨细胞成熟标志物(FGF23:早期骨细胞;骨硬化蛋白:晚期骨细胞)和骨细胞凋亡的情况。然后,我们评估了 1,25(OH)维生素 D 对透析患者原代成骨细胞体外成熟和矿化的影响。 doxercalciferol 可减少未矿化的类骨质堆积,同时增加早期(表达 FGF23)的骨细胞数量。骨细胞凋亡较低,但 doxercalciferol 可增加。骨 FGF23 表达与早期表达 FGF23 的骨细胞数量相关(r = 0.83,p < 0.001)。体外,1,25(OH)维生素 D 增加成熟成骨细胞标志物骨钙素(BGLAP)的表达,但只有非常高的浓度(100 nM)才会影响体外成骨细胞矿化。高剂量(10 和 100 nM)的 1,25(OH)维生素 D 还增加了 CKD 成骨细胞中 RANKL/OPG 表达的比值。维生素 D 甾醇直接刺激成骨细胞成熟。它们还增加了骨细胞的周转率并增加了成骨细胞分化因子的表达,从而可能调节成骨细胞/破骨细胞/骨细胞的偶联。通过增加早期骨细胞的数量,维生素 D 甾醇增加了 CKD 骨中的 FGF23 表达。

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