Abstract
Magnesium is an essential cofactor in many cellular processes, and aberrations in magnesium homeostasis can have life-threatening consequences. The kidney plays a central role in maintaining serum magnesium within a narrow range (0.70–1.10 mmol/L). Along the proximal tubule and thick ascending limb, magnesium reabsorption occurs via paracellular pathways. Members of the claudin family form the magnesium pores in these segments, and also regulate magnesium reabsorption by adjusting the transepithelial voltage that drives it. Along the distal convoluted tubule transcellular reabsorption via heteromeric TRPM6/7 channels predominates, although paracellular reabsorption may also occur. In this segment, the NaCl cotransporter plays a critical role in determining transcellular magnesium reabsorption. Although the general machinery involved in renal magnesium reabsorption has been identified by studying genetic forms of magnesium imbalance, the mechanisms regulating it are poorly understood. This review discusses pathways of renal magnesium reabsorption by different segments of the nephron, emphasizing newer findings that provide insight into regulatory process, and outlining critical unanswered questions.
Publisher
American Society of Nephrology (ASN)
Subject
Nephrology,General Medicine
Reference111 articles.
1. Magnesium basics
2. Magnesium in Man: Implications for Health and Disease
3. Tubular reabsorptive capacity for magnesium in the dog kidney;Wong;Am J Physiol,1983
4. Electrolyte handling by the superficial nephron of the rabbit;Wong;Am J Physiol,1986
5. Micropuncture study of magnesium transport along the nephron in the young rat;Brunette;Am J Physiol,1974
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