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首页> 外文期刊>American Journal of Physiology >Activation of the Ca2+-sensing receptor increases renal claudin-14 expression and urinary Ca2+ excretion
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Activation of the Ca2+-sensing receptor increases renal claudin-14 expression and urinary Ca2+ excretion

机译:Ca2 +感应受体的激活增加了肾脏claudin-14的表达和尿中Ca2 +的排泄

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Kidney stones are a prevalent clinical condition imposing a large economic burden on the healthcare system. Hypercalciuria remains the major risk factor for development of a Ca2+-containing stone. The kidney's ability to alter Ca2+ excretion in response to changes in serum Ca2+ is in part mediated by the Ca2+ -sensing receptor (CaSR). Recent studies revealed renal claudin-14 (Cldn14) expression localized to the thick ascending limb (TAL) and its expression to be regulated via the CaSR. We find that Cldn14 expression is increased by high dietary Ca2+ intake and by elevated serum Ca2+ levels induced by prolonged 1,25-dihydroxyvitamin D3 administration. Consistent with this, activation of the CaSR in vivo via administration of the calcimimetic cinacalcet hydrochloride led to a 40-fold increase in Cldn14 mRNA. Moreover, overexpression of Cldn14 in two separate cell culture models decreased paracellular Ca2+ flux by preferentially decreasing cation permeability, thereby increasing transepithelial resistance. These data support the existence of a mechanism whereby activation of the CaSR in the TAL increases Cldn14 expression, which in turn blocks the paracellular reabsorp-tion of Ca2+. This molecular mechanism likely facilitates renal Ca2+ losses in response to elevated serum Ca2+. Moreover, dys-regulation of the newly described CaSR-Cldn14 axis likely contributes to the development of hypercalciuria and kidney stones.
机译:肾结石是一种普遍的临床疾病,给医疗保健系统带来巨大的经济负担。高钙尿症仍然是形成含Ca2 +的结石的主要危险因素。肾脏响应血清Ca2 +变化而改变Ca2 +排泄的能力部分由Ca2 +感应受体(CaSR)介导。最近的研究表明,肾脏claudin-14(Cldn14)的表达定位在上肢粗大的上肢(TAL),并且其表达可以通过CaSR调节。我们发现,Cldn14表达的增加是由于饮食中Ca2 +的摄入量较高,以及通过长期服用1,25-二羟基维生素D3引起的血清Ca2 +水平升高。与此相一致,通过施用拟钙剂西那卡塞盐酸盐在体内激活CaSR会导致Cldn14 mRNA增加40倍。此外,在两个单独的细胞培养模型中Cldn14的过表达通过优先降低阳离子渗透性而降低了细胞旁Ca2 +的通量,从而增加了跨上皮的抵抗力。这些数据支持存在这样一种机制,其中TAL中CaSR的激活增加了Cldn14的表达,从而阻止了Ca2 +的细胞旁吸收。这种分子机制可能促进肾脏对血清Ca2 +升高的Ca2 +损失。此外,新描述的CaSR-Cldn14轴的异常调节可能有助于钙尿过多和肾结石的发展。

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