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23.2: Functions of calcium (23a.2)

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    117183
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    Calcium has a struc­tural role in bones and teeth, where 99% of the body's calcium exists primarily as calcium hydroxyapatite [Ca10(PO4)6(OH)2]. Bone is a dynamic tissue that undergoes remodeling throughout life except for the teeth. Bone formation is under the con­trol of osteoblasts, the bone forming cells, whereas bone resorption is initiated by osteoclasts, the bone resorbing cells. During growth, bone formation exceeds resorption as bone modeling is predominant. In later life when only bone remodeling takes place, bone resorption begins to occur at a faster rate than bone formation and this results in age-related bone loss (Siddiqui and Partridget, 2016).

    The remain­ing 1% of total body calcium is in the soft tissues where it has a regulatory role in several metabolic pro­cesses, including enzyme activation, vascular con­traction and vasodilation, muscle con­tractibility, nerve transmission, hormone function, and membrane transport. When the levels of absorbed calcium from the diet are insufficient to balance the obligatory fecal and urinary losses, calcium is drawn from the bone and blood calcium levels are main­tained within narrow limits. This homeostatic regulation of the calcium level in the blood is achieved by the interaction of the parathyroid hormone (PTH), 1,25‑dihydroxy­vitamin D (1,25(OH)2D), and calcitonin, the three major calcium-regulating hormones (Peacock, 2010). Phosphorus, pro­tein, estrogen, and other hormones, including glucocorticoids, thyroid hormones, growth hormone, and insulin also have a role (Siddiqui and Partridget, 2016).


    This page titled 23.2: Functions of calcium (23a.2) is shared under a CC BY 4.0 license and was authored, remixed, and/or curated by Rosalind S. Gibson via source content that was edited to the style and standards of the LibreTexts platform.