Vitamin D increases intestinal absorption of calcium and phosphate, supporting calcium/phosphate balance and bone health.
Vitamin D is a group of fat-soluble compounds that primarily function to increase intestinal absorption of calcium and phosphate, which is essential for maintaining normal blood mineral levels and supporting bone health. In humans, the most important forms are vitamin D3 (cholecalciferol) and vitamin D2 (ergocalciferol). Although the name โvitamin Dโ is a misnomer, these compounds act like a hormone: they are produced in the skin with adequate UVB sunlight exposure and can also be obtained from diet, fortified foods, and supplements. After intake or skin synthesis, vitamin D is converted in the liver to calcifediol (25-hydroxyvitamin D), which is commonly measured in serum to assess vitamin D status. Calcifediol is then further hydroxylated by the kidneys (and certain immune cells) to form calcitriol (1,25-dihydroxyvitamin D), the biologically active form. Calcitriol binds to the vitamin D receptor (VDR), a nuclear receptor that regulates gene expression in target tissues, including the intestine, by modulating transport proteins involved in calcium absorption (such as TRPV6 and calbindin). This VDR-mediated regulation helps maintain calcium and phosphate balance and promotes healthy bone mineralization.
Vitamin D increases intestinal absorption of calcium and phosphate, supporting calcium/phosphate balance and bone health.
Vitamin D3 and D2 are converted to calcifediol (measured as 25(OH)D) and then to calcitriol, the active hormone that binds the VDR to regulate intestinal calcium-transport gene expression.
Calcitriol (1,25-dihydroxyvitamin D) is the biologically active vitamin D metabolite that drives calcium and phosphate absorption by regulating gene expression through the vitamin D receptor.
Calcifediol, also called 25-hydroxyvitamin D, is the main circulating vitamin D metabolite measured in serum to assess vitamin D status.
The VDR is a nuclear receptor that calcitriol binds to, enabling it to act as a transcription factor that modulates genes involved in calcium absorption.
TRPV6 is an intestinal calcium transport protein whose expression is regulated by VDR activation to enhance calcium absorption.
Calbindin is an intestinal calcium-binding/transport-related protein whose expression is increased via VDR-mediated gene regulation to support calcium uptake.
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