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Hollis, B. W., & Wagner, C. L. (2013). The role of the parent compound vitamin d with respect to metabolism and function: Why clinical dose intervals can affect clinical outcomes. The Journal of Clinical Endocrinology & Metabolism, 98(12), 4619–4628. 
Added by: Sarina (2016-12-28 21:08:19)   
Resource type: Journal Article
DOI: 10.1210/jc.2013-2653
BibTeX citation key: Hollis2013
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Categories: Englisch = English
Creators: Hollis, Wagner
Collection: The Journal of Clinical Endocrinology & Metabolism
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Abstract

There is no doubt that vitamin D must be activated to the hormonal form 1,25-dihydroxyvitamin D to achieve full biological activity or that many tissues participate in this activation process—be it endocrine or autocrine. We believe that not only is 25-hydroxyvitamin D important to tissue delivery for this activation process, but also that intact vitamin D has a pivotal role in this process.

In this review, evidence on the vitamin D endocrine/autocrine system is presented and discussed in relation to vitamin D-binding protein affinity, circulating half-lives, and enzymatic transformations of vitamin D metabolites, and how these affect biological action in any given tissue.

Conclusions:

Circulating vitamin D, the parent compound, likely plays an important physiological role with respect to the vitamin D endocrine/autocrine system, as a substrate in many tissues, not originally thought to be important. Based on emerging data from the laboratory, clinical trials, and data on circulating 25-hydroxyvitamin D amassed during many decades, it is likely that for the optimal functioning of these systems, significant vitamin D should be available on a daily basis to ensure stable circulating concentrations, implying that variation in vitamin D dosing schedules could have profound effects on the outcomes of clinical trials because of the short circulating half-life of intact vitamin D.


Added by: Sarina  Last edited by: Sarina
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