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Review
. 2017 Jan-Feb;37(1):5-8.
doi: 10.1016/j.nefro.2016.04.008. Epub 2016 Jul 26.

Is the renal kallikrein-kinin system a factor that modulates calciuria?

[Article in English, Spanish]
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Free article
Review

Is the renal kallikrein-kinin system a factor that modulates calciuria?

[Article in English, Spanish]
Armando Luis Negri. Nefrologia. 2017 Jan-Feb.
Free article

Abstract

Renal tubular calcium reabsorption is one of the principal factors that determine serum calcium concentration and calcium excretion. Calcium excretion is regulated by the distal convoluted tubule and connecting tubule, where the epithelial calcium channel TRPV5 can be found, which limits the rate of transcellular calcium transport. The dynamic presence of the TRPV5 channel on the surface of the tubular cell is mediated by an endosomal recycling process. Different intrarenal factors are involved in calcium channel fixation in the apical membrane, including the anti-ageing hormone klotho and tissue kallikrein (TK). Both proteins are synthesised in the distal tubule and secreted in the tubular fluid. TK stimulates active calcium reabsorption through the bradykinin receptor B2 that compromises TRPV5 activation through the protein kinase C pathway. TK-deficient mice show hypercalciuria of renal origin comparable to that seen in TRPV5 knockout mice. There is a polymorphism with loss of function of the human TK gene R53H (allele H) that causes a marked decrease in enzymatic activity. The presence of the allele H seems to be common at least in the Japanese population (24%). These individuals have a tendency to greater calcium and sodium excretion in urine that is more evident during furosemide infusion. Future studies should analyse if manipulating the renal kallikrein-kinin system can correct idiopathic hypercalciuria with drugs other than thiazide diuretics.

Keywords: Calciuria; Calicreína tisular; Regulación; Regulation; Tissue kallikrein.

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