colecalciferol brands

9 registered brands containing colecalciferol in Kenya.

Colecalciferol

PubChem CID 5280795

Molecular formula: C27H44O

Most individuals naturally generate adequate amounts of vitamin D through ordinary dietary intake of vitamin D (in some foods like eggs, fish, and cheese) and natural photochemical conversion of the vitamin D3 precursor 7-dehydrocholesterol in the skin via exposure to sunlight. Conversely, vitamin D deficiency can often occur from a combination of insufficient exposure to sunlight, inadequate dietary intake of vitamin D, genetic defects with endogenous vitamin D receptor, or even severe liver or kidney disease. Such deficiency is known for resulting in conditions like rickets or osteomalacia, all of which reflect inadequate mineralization of bone, enhanced compensatory skeletal demineralization, resultant decreased calcium ion blood concentrations, and increases in the production and secretion of parathyroid hormone. Increases in parathyroid hormone stimulate the mobilization of skeletal calcium and the renal excretion of phosphorus. This enhanced mobilization of skeletal calcium leads towards porotic bone conditions. Ordinarily, while vitamin D3 is made naturally via photochemical processes in the skin, both itself and vitamin D2 can be found in various food and pharmaceutical sources as dietary supplements. The principal biological function of vitamin D is the maintenance of normal levels of serum calcium and phosphorus in the bloodstream by enhancing the efficacy of the small intestine to absorb these minerals from the diet. At the liver, vitamin D3 or D2 is hydroxylated to 25-hydroxyvitamin D and then finally to the primary active metabolite 1,25-dihydroxyvitamin D in the kidney via further hydroxylation. This final metabolite binds to endogenous vitamin d receptors, which results in a variety of regulatory roles - including maintaining calcium balance, the regulation of parathyroid hormone, the promotion of the renal reabsorption of calcium, increased intestinal absorption of calcium and phosphorus, and increased calcium and phosphorus mobilization of calcium and phosphorus from bone to plasma to maintain balanced levels of each in bone and the plasma. In particular, calcitriol interacts with vitamin D receptors in the small intestine to enhance the efficiency of intestinal calcium and phosphorous absorption from about 10-15% to 30-40% and 60% increased to 80%, respectively. Furthermore, calcitriol binds with vitamin D receptors in osteoblasts to stimulate a receptor activator of nuclear factor kB ligand (or RANKL) which subsequently interacts with receptor activator of nuclear factor kB (NFkB) on immature preosteoclasts, causing them to become mature bone-resorbing osteoclasts. Such mature osteoclasts ultimately function in removing calcium and phosphorus from bone to maintain blood calcium and phosphorus levels. Moreover, calcitriol also stimulates calcium reabsorption from the glomerular filtrate in the kidneys. Additionally, it is believed that when calcitriol binds with nuclear vitamin D receptors, that this bound complex itself binds to retinoic acid X receptor (RXR) to generate a heterodimeric complex that consequently binds to specific nucleotide sequences in the DNA called vitamin D response elements. When bound, various transcription factors attach to this complex, resulting in either up or down-regulation of the associated gene's activity. It is thought that there may be as much as 200 to 2000 genes that possess vitamin D response elements or that are influenced indirectly to control a multitude of genes across the genome. It is in this way that cholecalciferol is believed to function in regulating gene transcription associated with cancer risk, autoimmune disorders, and cardiovascular disease linked to vitamin D deficiency. In fact, there has been some research to suggest calcitriol may also be able to prevent malignancies by inducing cellular maturation and inducing apoptosis and inhibiting angiogenesis, exhibit anti-inflammatory effects by inhibiting foam cell formation and promoting angiogenesis in en

Source: PubChem (NCBI) ยท compound 5280795

Product Manufacturer Status Country
APCAL FORTE TABLETS
CALCIUM CITRATE USP EQUIVALENT TO ELEMENTAL CALCIUM__.250 MG MAGNESIUM HYDROXIDE BP EQUIVALENT TO ELEMENTAL MAGNESIUM___75 MG ZINC SULPHATE BP EQUIVALENT TO ZINC__.4 MG COLECALCIFEROL BP______..200 I.U. ASCORBIC ACID BP___
Harleys Registered Kenya
HOVITE-Z DROPS
RETINOL-2750IU COLECALCIFEROL-250IU ALPHA TOCOPHERYL ACETATE-5MG THIAMINE HYDROCHLORIDE-1MG RIBOFLAVIN-1MG PYRIDOXINE HYDROCHLORIDE-1MG DEXPANTHENOL-2.5MG NICOTINAMIDE-10MG ASCORBIC ACID-40MG ZINC SULPHATE-13.3MG
Pan Pharmaceuticals Registered Kenya
JUSDEE 400 DROPS
EACH ML CONTAINS: COLECALCIFEROL BP 400 IU
Simba Pharmaceuticals Registered Kenya
M-CALZ SUSPENSION
EACH 5 ML CONTAINS: CALCIUM CITRATE USP EQUIVALENT TO ELEMENTAL CALCIUM 100 MG COLECALCIFEROL BP 200 IU
Simba Pharmaceuticals Registered Kenya
M-CALZ TABLETS
EACH UNCOATED TABLET CONTAINS: CALCIUM CITRATE USP - 1000 MG MAGNESIUM STEARATE BP EQUIVALENT TO ELEMENTAL MAGNESIUM 100 MG ZINC SULPHATE MONOHYDRATE USP EQUIVALENT TO ELEMENTAL ZINC - 4 MGCOLECALCIFEROL BP -200 IU
Simba Pharmaceuticals Registered Kenya
VITA UV D3 60000 IU
60000 IU
Galaxy Pharmaceutical Registered Kenya
VITA UVD3 60000 IU
COLECALCIFEROL (VITAMIN D3) 60000 IU
Galaxy Pharmaceutical Registered Kenya
VITOC-D DROPS
800 IU
Phillips Therapeutics Registered Kenya
VITOC-D SACHET
60000 IU
Phillips Therapeutics Registered Kenya