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Kidney to bone via bedside to bench...and back? COMMENT

机译:从肾脏到骨头,从床边到工作台......然后回来?评论

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摘要

The rapid rise in circulating fibroblast growth factor 23 (FGF23) associated with kidney injury results in calcitriol deficiency, altered calcium homeostasis, and secondary hyperparathyroidism, and may contribute to cardiovascular complications and death. However, the mechanisms of increased FGF23 in states of kidney injury remain unclear. In this issue of the JCI, Simic et al. screened plasma taken from the renal vein of patients undergoing cardiac catheterization and identified glycerol-3-phosphate (G-3-P) as the most significant correlate of simultaneous arterial FGF23 levels. When G-3-P was administered to mice, FGF23 production increased in bone. In a series of elegant mouse studies, the authors discovered a pathway linking increased G-3-P to increased FGF23 via increases in lysophosphatidic acid (LPA), which activates the LPA receptor 1 in FGF23-secreting cells in the bone and bone marrow. Although the authors present human data that broadly support the results from the mouse models, further research is needed to determine whether targeting the G-3-P/FGF23 pathway has the potential to modify FGF23-related complications in the clinic.
机译:与肾损伤相关的循环成纤维细胞生长因子 23 (FGF23) 的快速升高导致骨化三醇缺乏、钙稳态改变和继发性甲状旁腺功能亢进症,并可能导致心血管并发症和死亡。然而,肾损伤状态下 FGF23 升高的机制尚不清楚。在本期 JCI 中,Simic 等人筛选了从接受心导管插入术的患者的肾静脉中采集的血浆,并确定甘油-3-磷酸 (G-3-P) 是同时动脉 FGF23 水平的最显着相关性。当对小鼠施用G-3-P时,骨骼中FGF23的产生增加。在一系列优雅的小鼠研究中,作者发现了一种途径,通过增加溶血磷脂酸(LPA)将增加的G-3-P与增加的FGF23联系起来,溶血磷脂酸激活骨骼和骨髓中FGF23分泌细胞中的LPA受体1。尽管作者提供的人类数据广泛支持小鼠模型的结果,但需要进一步的研究来确定靶向 G-3-P/FGF23 通路是否有可能改变临床上 FGF23 相关并发症。

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