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    | Off-label Usage | 
    
      
	[Á¶È¸]    
     | 
   
     
  
  
  
  
  
   
    | Related FDA Approved Drug | 
    
      
      ±âÁØ ¼ººÐ: THIAMINEBEROCCA PN (ASCORBIC ACID; BIOTIN; CYANOCOBALAMIN; DEXPANTHENOL; ERGOCALCIFEROL; FOLIC ACID; NIACINAMIDE; PYRIDOXINE HYDROCHLORIDE; RIBOFLAVIN PHOSPHATE SODIUM; THIAMINE HYDROCHLORIDE; VITAMIN A PALMITATE; VITAMIN E) 
BETALIN S (THIAMINE HYDROCHLORIDE) 
CERNEVIT-12 (ALPHA-TOCOPHEROL; ASCORBIC ACID; BIOTIN; CHOLECALCIFEROL; CYANOCOBALAMIN; FOLIC ACID; NIACINAMIDE; PANTOTHENIC ACID; PYRIDOXINE; RIBOFLAVIN; THIAMINE; VITAMIN A) 
INFUVITE ADULT (ALPHA-TOCOPHEROL ACETATE; ASCORBIC ACID; BIOTIN; CHOLECALCIFEROL; CYANOCOBALAMIN; DEXPANTHENOL; FOLIC ACID; NIACINAMIDE; PYRIDOXINE HYDROCHLORIDE; RIBOFLAVIN PHOSPHATE SODIUM; THIAMINE HYDROCHLORIDE; VITAMIN A PALMITATE; VITAMIN K) 
INFUVITE PEDIATRIC (ASCORBIC ACID; BIOTIN; CHOLECALCIFEROL; CYANOCOBALAMIN; DEXPANTHENOL; FOLIC ACID; NIACINAMIDE; PYRIDOXINE; RIBOFLAVIN; THIAMINE; TOCOPHEROL ACETATE; VITAMIN A; VITAMIN K) 
INFUVITE PEDIATRIC (PHARMACY BULK PACKAGE) (ASCORBIC ACID; BIOTIN; CHOLECALCIFEROL; CYANOCOBALAMIN; DEXPANTHENOL; FOLIC ACID; NIACINAMIDE; PYRIDOXINE; RIBOFLAVIN; THIAMINE; TOCOPHEROL ACETATE; VITAMIN A; VITAMIN K) 
M.V.C. 9+3 (ASCORBIC ACID; BIOTIN; CYANOCOBALAMIN; DEXPANTHENOL; ERGOCALCIFEROL; FOLIC ACID; NIACINAMIDE; PYRIDOXINE HYDROCHLORIDE; RIBOFLAVIN PHOSPHATE SODIUM; THIAMINE HYDROCHLORIDE; VITAMIN A; VITAMIN E) 
M.V.I. ADULT (ASCORBIC ACID; BIOTIN; CYANOCOBALAMIN; DEXPANTHENOL; ERGOCALCIFEROL; FOLIC ACID; NIACINAMIDE; PYRIDOXINE HYDROCHLORIDE; RIBOFLAVIN PHOSPHATE SODIUM; THIAMINE HYDROCHLORIDE; VITAMIN A; VITAMIN E; VITAMIN K) 
M.V.I. ADULT (PHARMACY BULK PACKAGE) (ASCORBIC ACID; BIOTIN; CYANOCOBALAMIN; DEXPANTHENOL; ERGOCALCIFEROL; FOLIC ACID; NIACINAMIDE; PYRIDOXINE HYDROCHLORIDE; RIBOFLAVIN PHOSPHATE SODIUM; THIAMINE HYDROCHLORIDE; VITAMIN A; VITAMIN E; VITAMIN K) 
M.V.I. PEDIATRIC (ASCORBIC ACID; BIOTIN; CYANOCOBALAMIN; DEXPANTHENOL; ERGOCALCIFEROL; FOLIC ACID; NIACINAMIDE; PHYTONADIONE; PYRIDOXINE HYDROCHLORIDE; RIBOFLAVIN PHOSPHATE SODIUM; THIAMINE HYDROCHLORIDE; VITAMIN A; VITAMIN E) 
M.V.I.-12 (ASCORBIC ACID; BIOTIN; CYANOCOBALAMIN; DEXPANTHENOL; ERGOCALCIFEROL; FOLIC ACID; NIACINAMIDE; PYRIDOXINE HYDROCHLORIDE; RIBOFLAVIN PHOSPHATE SODIUM; THIAMINE HYDROCHLORIDE; VITAMIN A; VITAMIN E) 
M.V.I.-12 (WITHOUT VITAMIN K) (ASCORBIC ACID; BIOTIN; CYANOCOBALAMIN; DEXPANTHENOL; ERGOCALCIFEROL; FOLIC ACID; NIACINAMIDE; PYRIDOXINE HYDROCHLORIDE; RIBOFLAVIN PHOSPHATE SODIUM; THIAMINE HYDROCHLORIDE; VITAMIN A; VITAMIN E) 
M.V.I.-12 LYOPHILIZED (ASCORBIC ACID; BIOTIN; CYANOCOBALAMIN; DEXPANTHENOL; ERGOCALCIFEROL; FOLIC ACID; NIACINAMIDE; PYRIDOXINE; RIBOFLAVIN PHOSPHATE SODIUM; THIAMINE; VITAMIN A; VITAMIN E) 
MVC PLUS (ASCORBIC ACID; BIOTIN; CYANOCOBALAMIN; DEXPANTHENOL; ERGOCALCIFEROL; FOLIC ACID; NIACINAMIDE; PYRIDOXINE HYDROCHLORIDE; RIBOFLAVIN PHOSPHATE SODIUM; THIAMINE HYDROCHLORIDE; VITAMIN A; VITAMIN E) 
THIAMINE HYDROCHLORIDE (THIAMINE HYDROCHLORIDE) 
VITAPED (ASCORBIC ACID; BIOTIN; CYANOCOBALAMIN; ERGOCALCIFEROL; FOLIC ACID; NIACINAMIDE; PANTOTHENIC ACID; PHYTONADIONE; PYRIDOXINE; RIBOFLAVIN; THIAMINE; VITAMIN A PALMITATE; VITAMIN E) 
±âÁØ ¼ººÐ: SODIUM IODIDEHICON (SODIUM IODIDE, I-131) 
IODOTOPE (SODIUM IODIDE, I-131) 
SODIUM IODIDE I 123 (SODIUM IODIDE, I-123) 
SODIUM IODIDE I 131 (SODIUM IODIDE, I-131) 
±âÁØ ¼ººÐ: SODIUM ASCORBATEMOVIPREP (ASCORBIC ACID; POLYETHYLENE GLYCOL 3350; POTASSIUM CHLORIDE; SODIUM ASCORBATE; SODIUM CHLORIDE; SODIUM SULFATE) 
±âÁØ ¼ººÐ: RUBIDIUM IODIDE±âÁØ ¼ººÐ: CALCIUM FORMATE
        
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    Calcium¿¡ ´ëÇÑ µ¶¼ºÁ¤º¸ : Á¤º¸º¸±â 
  Ãâó: ±¹¸³µ¶¼º°úÇпø µ¶¼º¹°ÁúÁ¤º¸DB : http://www.nitr.go.kr/nitr/contents/m134200/view.do  | 
   
  
   
    | Mechanism of Action | 
    
       Calcium¿¡ ´ëÇÑ Mechanism_Of_Action Á¤º¸ Calcium plays a vital role in the anatomy, physiology and biochemistry of organisms and of the cell, particularly in signal transduction pathways. More than 500 human proteins are known to bind or transport calcium.   The skeleton acts as a major mineral storage site for the element and releases Ca2+ ions into the bloodstream under controlled conditions. Circulating calcium is either in the free, ionized form or bound to blood proteins such as serum albumin. Parathyroid hormone (secreted from the parathyroid gland) regulates the resorption of Ca2+ from bone. Calcitonin stimulates incorporation of calcium in bone, although this process is largely independent of calcitonin. Although calcium flow to and from the bone is neutral, about 5 mmol is turned over a day. Bone serves as an important storage point for calcium, as it contains 99% of the total body calcium.  Low calcium intake may also be a risk factor in the development of osteoporosis.  The best-absorbed form of calcium from a pill is a calcium salt like carbonate or phosphate. Calcium gluconate and calcium lactate are absorbed well by pregnant women. Seniors absorb calcium lactate, gluconate and citrate better unless they take their calcium supplement with a full breakfast. The currently recommended calcium intake is 1,500 milligrams per day for women not taking estrogen and 800 milligrams per day for women on estrogen. There is close to 300 milligrams of calcium in one cup of fluid milk. Calcium carbonate is currently the best and least expensive form of calcium supplement available.
  Thiamine¿¡ ´ëÇÑ Mechanism_Of_Action Á¤º¸ It is thought that the mechanism of action of thiamine on endothelial cells is related to a reduction in intracellular protein glycation by redirecting the glycolytic flux. 
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    | Pharmacology | 
     
       Thiamine¿¡ ´ëÇÑ Pharmacology Á¤º¸ Thiamine is a vitamin with antioxidant, erythropoietic, cognition-and mood-modulatory, antiatherosclerotic, putative ergogenic, and detoxification activities. Thiamine has been found to protect against lead-induced lipid peroxidation in rat liver and kidney. Thiamine deficiency results in selective neuronal death in animal models. The neuronal death is associated with increased free radical production, suggesting that oxidative stress may play an important early role in brain damage associated with thiamine deficiency. Thiamine plays a key role in intracellular glucose metabolism and it is thought that thiamine inhibits the effect of glucose and insulin on arterial smooth muscle cell proliferation. Inhibition of endothelial cell proliferation may also promote atherosclerosis. Endothelial cells in culture have been found to have a decreased proliferative rate and delayed migration in response to hyperglycemic conditions. Thiamine has been shown to inhibit this effect of glucose on endothelial cells. 
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    | Protein Binding | 
    
       Thiamine¿¡ ´ëÇÑ ´Ü¹é°áÇÕ Á¤º¸ 90-94% 
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    | Absorption | 
    
       Thiamine¿¡ ´ëÇÑ Absorption Á¤º¸ Absorbed mainly from duodenum, by both active and passive processes 
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    | Pharmacokinetics | 
    
       Thiamine HClÀÇ ¾à¹°µ¿·ÂÇÐÀÚ·á 
 Sodium ascorbateÀÇ ¾à¹°µ¿·ÂÇÐÀÚ·á 
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    | Biotransformation | 
    
       Thiamine¿¡ ´ëÇÑ Biotransformation Á¤º¸ Hepatic 
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    | Toxicity | 
    
       Thiamine¿¡ ´ëÇÑ Toxicity Á¤º¸ Thiamine toxicity is uncommon; as excesses are readily excreted, although long-term supplementation of amounts larger than 3 gram have been known to cause toxicity. Oral mouse LD50 = 8224 mg/kg, oral rat LD50 = 3710 mg/kg. 
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    | Drug Interactions | 
    
       Calcium¿¡ ´ëÇÑ Drug_Interactions Á¤º¸ Alendronate	Formation of non-absorbable complexesAmprenavir	The antiacid decreases the absorption of amprenavirAtazanavir	This gastric pH modifier decreases the levels/effects of atazanavirChloroquine	The antiacid decreases the absorption of chloroquineCiprofloxacin	Formation of non-absorbable complexesDapsone	Formation of non-absorbable complexesDelavirdine	The antiacid decreases the effect of delavirdineDemeclocycline	Formation of non-absorbable complexesDoxycycline	Formation of non-absorbable complexesEnoxacin	Formation of non-absorbable complexesFosamprenavir	The antiacid decreases the absorption of amprenavirGrepafloxacin	Formation of non-absorbable complexesIbandronate	Formation of non-absorbable complexesIndinavir	The antiacid decreases the absorption of indinavirItraconazole	The antacid decreases the effect of the imidazoleKetoconazole	The antacid decreases the effect of the imidazoleLevofloxacin	Formation of non-absorbable complexesLevothyroxine	Calcium decreases absorption of levothyroxineLomefloxacin	Formation of non-absorbable complexesMethacycline	Formation of non-absorbable complexesMinocycline	Formation of non-absorbable complexesMoxifloxacin	Formation of non-absorbable complexesNorfloxacin	Formation of non-absorbable complexesOfloxacin	Formation of non-absorbable complexesOxytetracycline	Formation of non-absorbable complexesPefloxacin	Formation of non-absorbable complexesPolystyrene sulfonate	Formation of non-absorbable complexesRisedronate	Formation of non-absorbable complexesTetracycline	Formation of non-absorbable complexesTrovafloxacin	Formation of non-absorbable complexesClodronate	Formation of non-absorbable complexesEtidronic acid	Formation of non-absorbable complexesMycophenolate mofetil	Formation of non-absorbable complexesTemafloxacin	Formation of non-absorbable complexes
  Thiamine¿¡ ´ëÇÑ Drug_Interactions Á¤º¸ Not Available 
     | 
   
  
   
    CYP450  Drug Interaction | 
    
      [CYP450 TableÁ÷Á¢Á¶È¸] 
     | 
   
  
   
    | Drug Target | 
    
      
      [Drug Target]
     | 
   
  
   
    | Description | 
    
       Calcium¿¡ ´ëÇÑ Description Á¤º¸ Calcium plays a vital role in the anatomy, physiology and biochemistry of organisms and of the cell, particularly in signal transduction pathways. The skeleton acts as a major mineral storage site for the element and releases Ca2+ ions into the bloodstream under controlled conditions. Circulating calcium is either in the free, ionized form or bound to blood proteins such as serum albumin. Although calcium flow to and from the bone is neutral, about 5 mmol is turned over a day. Bone serves as an important storage point for calcium, as it contains 99% of the total body calcium.  Low calcium intake may also be a risk factor in the development of osteoporosis.  The best-absorbed form of calcium from a pill is a calcium salt like carbonate or phosphate. Calcium gluconate and calcium lactate are absorbed well by pregnant women. Seniors absorb calcium lactate, gluconate and citrate better unless they take their calcium supplement with a full breakfast.
  Thiamine¿¡ ´ëÇÑ Description Á¤º¸ 3-((4-Amino-2-methyl-5-pyrimidinyl)methyl)-5-(2- hydroxyethyl)-4-methylthiazolium chloride. [PubChem] 
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    | Drug Category | 
    
       Thiamine¿¡ ´ëÇÑ Drug_Category Á¤º¸ Anti-inflammatory AgentsEssential VitaminVitamin B ComplexVitamins (Vitamin B Complex) 
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    | Smiles String Canonical | 
    
       Calcium¿¡ ´ëÇÑ Smiles_String_canonical Á¤º¸ Not Available
  Thiamine¿¡ ´ëÇÑ Smiles_String_canonical Á¤º¸ CC1=NC=C(C[N+]2=CSC(CCO)=C2C)C(N)=N1 
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    | Smiles String Isomeric | 
    
       Calcium¿¡ ´ëÇÑ Smiles_String_isomeric Á¤º¸ Not Available
  Thiamine¿¡ ´ëÇÑ Smiles_String_isomeric Á¤º¸ CC1=NC=C(C[N+]2=CSC(CCO)=C2C)C(N)=N1 
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    | InChI Identifier | 
    
       Calcium¿¡ ´ëÇÑ InChI_Identifier Á¤º¸ Not Available
  Thiamine¿¡ ´ëÇÑ InChI_Identifier Á¤º¸ InChI=1/C12H17N4OS/c1-8-11(3-4-17)18-7-16(8)6-10-5-14-9(2)15-12(10)13/h5,7,17H,3-4,6H2,1-2H3,(H2,13,14,15)/q+1/f/h13H2 
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    | Chemical IUPAC Name | 
    
       Calcium¿¡ ´ëÇÑ Chemical_IUPAC_Name Á¤º¸ Not Available
  Thiamine¿¡ ´ëÇÑ Chemical_IUPAC_Name Á¤º¸ 2-[3-[(4-amino-2-methylpyrimidin-5-yl)methyl]-4-methyl-1,3-thiazol-3-ium-5-yl]ethanol 
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