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钙蛋白颗粒调节成骨细胞中纤维母细胞生长因子-23的表达。

Calciprotein particles regulate fibroblast growth factor-23 expression in osteoblasts.

作者信息

Akiyama Ken-Ichi, Miura Yutaka, Hayashi Hirosaka, Sakata Asuka, Matsumura Yoshitaka, Kojima Masaki, Tsuchiya Ken, Nitta Kosaku, Shiizaki Kazuhiro, Kurosu Hiroshi, Kuro-O Makoto

机构信息

Division of Anti-aging Medicine, Center for Molecular Medicine, Jichi Medical University, Tochigi, Japan; Department of Medicine, Kidney Center, Tokyo Women's Medical University, Tokyo, Japan.

Division of Anti-aging Medicine, Center for Molecular Medicine, Jichi Medical University, Tochigi, Japan.

出版信息

Kidney Int. 2020 Apr;97(4):702-712. doi: 10.1016/j.kint.2019.10.019. Epub 2019 Nov 9.

Abstract

Fibroblast growth factor-23 (FGF23) is a hormone indispensable for maintaining phosphate homeostasis. In response to phosphate intake, FGF23 is secreted from osteocytes/osteoblasts and acts on the kidney to increase urinary phosphate excretion. However, the mechanism by which these cells sense phosphate intake remains elusive. Calciprotein particles are nanoparticles of calcium-phosphate precipitates bound to serum protein fetuin-A and are generated spontaneously in solution containing calcium, phosphate, and fetuin-A to be dispersed as colloids. In cultured osteoblastic cells, increase in either calcium or phosphate concentration in the medium induced FGF23 expression, which was dependent on calciprotein particle formation. When transition of calcium-phosphate precipitates from the amorphous phase to the crystalline phase was blocked by bisphosphonate, the calciprotein particle size was reduced and FGF23 expression was augmented, suggesting that small calciprotein particles containing amorphous calcium-phosphate precipitates function as a more potent FGF23 inducer than larger calciprotein particles containing crystalline calcium-phosphate precipitates. In mice, bolus phosphate administration by oral gavage transiently increased circulating calciprotein particle levels followed by a modest increase in FGF23 expression and serum FGF23 levels. However, continuous dietary phosphate load induced robust and persistent increase in circulating calciprotein particles and FGF23 levels. We confirmed by in vivo imaging that calciprotein particles injected intravenously extravasated into the bone marrow and were deposited on the inner surface of the bone, indicating that these particles have direct access to osteoblasts. Thus, we propose that osteoblasts induce FGF23 expression and secretion when they sense an increase in extracellular calciprotein particles following phosphate ingestion.

摘要

成纤维细胞生长因子23(FGF23)是维持磷酸盐稳态不可或缺的一种激素。作为对磷酸盐摄入的反应,FGF23从骨细胞/成骨细胞分泌出来,并作用于肾脏以增加尿磷酸盐排泄。然而,这些细胞感知磷酸盐摄入的机制仍不清楚。钙蛋白颗粒是与血清蛋白胎球蛋白-A结合的磷酸钙沉淀物的纳米颗粒,在含有钙、磷酸盐和胎球蛋白-A的溶液中自发产生并以胶体形式分散。在培养的成骨细胞中,培养基中钙或磷酸盐浓度的增加会诱导FGF23表达,这依赖于钙蛋白颗粒的形成。当双膦酸盐阻止磷酸钙沉淀物从无定形相转变为结晶相时,钙蛋白颗粒尺寸减小,FGF23表达增强,这表明含有无定形磷酸钙沉淀物的小钙蛋白颗粒比含有结晶磷酸钙沉淀物的大钙蛋白颗粒更有效地诱导FGF23。在小鼠中,通过口服灌胃给予大剂量磷酸盐会使循环钙蛋白颗粒水平短暂升高,随后FGF23表达和血清FGF23水平略有增加。然而,持续的饮食磷酸盐负荷会导致循环钙蛋白颗粒和FGF23水平强劲且持续升高。我们通过体内成像证实,静脉注射的钙蛋白颗粒渗出到骨髓中并沉积在骨的内表面,表明这些颗粒可以直接接触成骨细胞。因此,我们提出,当成骨细胞感知到磷酸盐摄入后细胞外钙蛋白颗粒增加时,会诱导FGF23的表达和分泌。

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