4.6 Article

Kidney Function and Influence of Sunlight Exposure in Patients With Impaired 24-Hydroxylation of Vitamin D Due to CYP24A1 Mutations

Journal

AMERICAN JOURNAL OF KIDNEY DISEASES
Volume 65, Issue 1, Pages 122-126

Publisher

W B SAUNDERS CO-ELSEVIER INC
DOI: 10.1053/j.ajkd.2014.06.037

Keywords

CYP24A1; 24 alpha-hydroxylase; idiopathic infantile hypercalcemia (IIH); hypercalcemia; hypercalciuria; hypervitaminosis D; nephrocalcinosis; vitamin D metabolism; 1,25-dihydroxyvitamin D (1,25[OH](2)D); parathyroid hormone (PTH); chronic kidney disease (CKD)

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Loss-of-function mutations of CYP24A1, the enzyme that converts the major circulating and active forms of vitamin D to inactive metabolites, recently have been implicated in idiopathic infantile hypercalcemia. Patients with biallelic mutations in CYP24A1 present with severe hypercalcemia and nephrocalcinosis in infancy or hypercalciuria, kidney stones, and nephrocalcinosis in adulthood. We describe a cohort of 7 patients (2 adults, 5 children) presenting with severe hypercalcemia who had homozygous or compound heterozygous mutations in CYP24A1. Acute episodes of hypercalcemia in infancy were the first symptom in 6 of 7 patients; in all patients, symptoms included nephrocalcinosis, hypercalciuria, low parathyroid hormone (PTH) levels, and higher than expected 1,25-dihydroxyvitamin D levels. Longitudinal data suggested that in most patients, periods of increased sunlight exposure tended to correlate with decreases in PTH levels and increases in calcemia and calciuria. Follow-up of the 2 adult patients showed reduced glomerular filtration rate and extrarenal manifestations, including calcic corneal deposits and osteoporosis. Cases of severe PTH-independent hypercalcemia associated with hypercalciuria in infants should prompt genetic analysis of CYP24A1. These patients should be monitored carefully throughout life because they may be at increased risk for developing chronic kidney disease. (C) 2014 by the National Kidney Foundation, Inc.

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