在正常和尿毒症大鼠中,炎症既增加又引起对FGF23的抵抗。

Maria E Rodríguez-Ortiz, Juan M Díaz-Tocados, Juan R Muñoz-Castañeda, Carmen Herencia, Carmen Pineda, Julio M Martínez-Moreno, Addy Montes de Oca, Rodrigo López-Baltanás, Juan Alcalá-Díaz, Alberto Ortiz, Escolástico Aguilera-Tejero, Arnold Felsenfeld, Mariano Rodríguez, Yolanda Almadén
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引用次数: 15

摘要

成纤维细胞生长因子23 (FGF23)增加磷排泄,降低骨化三醇(1,25(OH)2D)水平。FGF23从肾衰竭早期开始增加。我们评估了肾功能衰竭时严格控制磷摄入量是否能阻止FGF23的增加,以及炎症在多大程度上损害了FGF23的调节。试验用5/6只去肾Wistar大鼠饲喂含磷0.2-1.2%的日粮3或15 d。在短期(3 d)实验中,所有Nx组的FGF23水平均显著升高。15 d时,除0.2%磷组外,所有Nx大鼠FGF23均升高。在第二个实验中,Nx大鼠饲养低磷饲料(0.2和0.4%)15 d,每天腹腔注射脂多糖(LPS)诱导炎症。在这些大鼠中,尽管低磷饮食,FGF23仍有所增加。因此,需要较高的FGF23水平来维持尿磷和正常的血清磷值。在0.2%磷饲粮的Nx大鼠中,肾脏Klotho的表达保持不变,0.4%磷饲粮的表达降低,而在LPS的Nx大鼠中,Klotho的表达明显降低。在离体实验中,高磷和LPS使细胞核β-catenin和p65-NFκB升高,Klotho降低。抑制炎症和Wnt信号激活导致FGF23水平下降和肾Klotho增加。综上所述,严格控制磷的摄入阻止了肾功能衰竭时FGF23的升高,而炎症则单独增加了FGF23的值。Klotho的降低可能解释了炎症时肾脏对FGF23的抵抗。这些作用可能是由NFkB和Wnt/β-catenin信号的激活介导的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inflammation both increases and causes resistance to FGF23 in normal and uremic rats.

Fibroblast growth factor 23 (FGF23) increases phosphorus excretion and decreases calcitriol (1,25(OH)2D) levels. FGF23 increases from early stages of renal failure. We evaluated whether strict control of phosphorus intake in renal failure prevents the increase in FGF23 and to what extent inflammation impairs regulation of FGF23. The study was performed in 5/6 nephrectomized (Nx) Wistar rats fed diets containing 0.2-1.2% phosphorus for 3 or 15 days. FGF23 levels significantly increased in all Nx groups in the short-term (3-day) experiment. However, at 15 days, FGF23 increased in all Nx rats except in those fed 0.2% phosphorus. In a second experiment, Nx rats fed low phosphorus diets (0.2 and 0.4%) for 15 days received daily intraperitoneal lipopolysaccharide (LPS) injections to induce inflammation. In these rats, FGF23 increased despite the low phosphorus diets. Thus, higher FGF23 levels were needed to maintain phosphaturia and normal serum phosphorus values. Renal Klotho expression was preserved in Nx rats on a 0.2% phosphorus diet, reduced on a 0.4% phosphorus diet, and markedly reduced in Nx rats receiving LPS. In ex vivo experiments, high phosphorus and LPS increased nuclear β-catenin and p65-NFκB and decreased Klotho. Inhibition of inflammation and Wnt signaling activation resulted in decreased FGF23 levels and increased renal Klotho. In conclusion, strict control of phosphorus intake prevented the increase in FGF23 in renal failure, whereas inflammation independently increased FGF23 values. Decreased Klotho may explain the renal resistance to FGF23 in inflammation. These effects are likely mediated by the activation of NFkB and Wnt/β-catenin signaling.

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