The Journal of Clinical Endocrinology & Metabolism · 1998 · 62 citations · 35 references
NutritionMetabolomic ProfilingOxidative StressMetabolic Syndrome24-Hydroxyvitamin D2Metabolic SignalingHuman SerumHuman MetabolismHealth SciencesVitamin D2BiochemistryVitamin B ComplexMetabolomicsPharmacologyMicronutrientsVitamin NutritionPhysiologySignificant PathwayMetabolic ProfilingMetabolismMedicine
We have produced evidence for a new metabolic pathway for vitamin D2 in humans involving the production of 24-hydroxyvitamin D2 (24OHD2) and 1,24-dihydroxyvitamin D2 [1,24-(OH)2D2]. These metabolites were produced after either a single large dose (10(6) IU) of vitamin D2 or repeated daily doses between 10(3) and 5 x 10(4) IU. We developed assay systems for the metabolites in human serum and showed that in some chronically treated patients, the concentration of 1,24-(OH)2D2 equalled that of 1,25-(OH)2D2 at about 100 pmol/L. The metabolites were identified by high performance liquid chromatography with diode array spectrophotometry for 24OHD2 and by high resolution gas chromatography-mass spectrometry for 1,24-(OH)2D2. We show that 1,24-(OH)2D2 synthesis can be stimulated by PTH, indicating a renal origin for this metabolite and postulate that it is formed from 24OHD2, which may be synthesized in liver. We conclude from this study that vitamin D2 gives rise to two biologically active products, 1,24-(OH)2D2 and 1,25-(OH)2D2, and that 1,24-(OH)2D2 could be an attractive naturally occurring analog of 1,25-(OH)2D3 for clinical use.
35
Yu-Ding Guo, Stephen A. Strugnell, Donald W. Back et al. · Proceedings of the National Academy of Sciences · 1993 · 173 citations · Full text
Lipid Peroxidation, P-450 Hydroxylates, Oxidative Stress +22
Alexander U. Tan, Barton S. Levine, Richard B. Mazess et al. · Kidney International · 1997 · 138 citations · Full text