首页> 外文期刊>American Journal of Physiology >Activation of the Ca(2+)-sensing receptor increases renal claudin-14 expression and urinary Ca(2+) excretion.
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Activation of the Ca(2+)-sensing receptor increases renal claudin-14 expression and urinary Ca(2+) excretion.

机译:Ca(2+)感应受体的激活增加了肾脏claudin-14表达和尿Ca(2+)排泄。

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摘要

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 Ca(2+)-containing stone. The kidney's ability to alter Ca(2+) excretion in response to changes in serum Ca(2+) is in part mediated by the Ca(2+)-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 Ca(2+) intake and by elevated serum Ca(2+) 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 Ca(2+) 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 reabsorption of Ca(2+). This molecular mechanism likely facilitates renal Ca(2+) losses in response to elevated serum Ca(2+). Moreover, dysregulation 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Ca(2+)的石头的主要危险因素。肾脏改变Ca(2+)排泄以响应血清Ca(2+)变化的能力部分是由Ca(2+)感应受体(CaSR)介导的。最近的研究表明,肾脏claudin-14(Cldn14)的表达定位于上肢粗大的上肢(TAL),并且其表达受CaSR调节。我们发现,Cldn14的表达是由高饮食Ca(2+)摄入量和血清中Ca(2+)水平升高所引起的,而血清Ca(2+)水平由1,25-二羟基维生素D3延长给药所诱导。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,Cldn14在两个单独的细胞培养模型中的过表达通过优先降低阳离子渗透性来降低细胞旁Ca(2+)的通量,从而增加跨上皮的抵抗力。这些数据支持存在一种机制,通过该机制,TAL中的CaSR激活会增加Cldn14表达,从而阻止Ca(2+)的细胞旁重吸收。此分子机制可能促进肾Ca(2+)丢失以响应血清Ca(2+)升高。此外,新描述的CaSR-Cldn14轴失调可能导致钙尿过多和肾结石的发展。

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