Klorazepat je organsko jedinjenje, koje sadrži 16 atoma ugljenika i ima molekulsku masu od 314,723 Da.[1][2][3][4]

Klorazepat
Klinički podaci
Prodajno imeChlorazepate, Chlorazepic acid, Clorazepate dipotassium, Clorazepic acid
Drugs.comMonografija
Način primeneOralno
Farmakokinetički podaci
Poluvreme eliminacije40 - 50 h
IzlučivanjeRenalno
Identifikatori
CAS broj23887-31-2 ДаY
ATC kodN05BA05 (WHO)
PubChemCID 2809
DrugBankDB00628 ДаY
ChemSpider2707 ДаY
ChEBICHEBI:3761 ДаY
ChEMBLCHEMBL1201305 ДаY
Hemijski podaci
FormulaC16H11ClN2O3
Molarna masa314,723
  • OC(=O)C1N=C(C2=CC=CC=C2)C2=C(NC1=O)C=CC(Cl)=C2
  • InChI=1S/C16H11ClN2O3/c17-10-6-7-12-11(8-10)13(9-4-2-1-3-5-9)19-14(16(21)22)15(20)18-12/h1-8,14H,(H,18,20)(H,21,22) ДаY
  • Key:XDDJGVMJFWAHJX-UHFFFAOYSA-N ДаY

Osobine уреди

Osobina Vrednost
Broj akceptora vodonika 4
Broj donora vodonika 2
Broj rotacionih veza 2
Particioni koeficijent[5] (ALogP) 2,8
Rastvorljivost[6] (logS, log(mol/L)) -5,2
Polarna površina[7] (PSA, Å2) 78,8

Reference уреди

  1. ^ Systematic review of the benzodiazepines. Guidelines for data sheets on diazepam, chlordiazepoxide, medazepam, clorazepate, lorazepam, oxazepam, temazepam, triazolam, nitrazepam, and flurazepam. Committee on the Review of Medicines. Br Med J. 1980 Mar 29;280(6218):910-2. PMID 7388368
  2. ^ McElhatton PR: The effects of benzodiazepine use during pregnancy and lactation. Reprod Toxicol. 1994 Nov-Dec;8(6):461-75. PMID 7881198
  3. ^ Knox C, Law V, Jewison T, Liu P, Ly S, Frolkis A, Pon A, Banco K, Mak C, Neveu V, Djoumbou Y, Eisner R, Guo AC, Wishart DS (2011). „DrugBank 3.0: a comprehensive resource for omics research on drugs”. Nucleic Acids Res. 39 (Database issue): D1035—41. PMC 3013709 . PMID 21059682. doi:10.1093/nar/gkq1126. 
  4. ^ David S. Wishart; Craig Knox; An Chi Guo; Dean Cheng; Savita Shrivastava; Dan Tzur; Bijaya Gautam; Murtaza Hassanali (2008). „DrugBank: a knowledgebase for drugs, drug actions and drug targets”. Nucleic acids research. 36 (Database issue): D901—6. PMC 2238889 . PMID 18048412. doi:10.1093/nar/gkm958. 
  5. ^ Ghose, A.K.; Viswanadhan V.N. & Wendoloski, J.J. (1998). „Prediction of Hydrophobic (Lipophilic) Properties of Small Organic Molecules Using Fragment Methods: An Analysis of AlogP and CLogP Methods”. J. Phys. Chem. A. 102: 3762—3772. doi:10.1021/jp980230o. 
  6. ^ Tetko IV, Tanchuk VY, Kasheva TN, Villa AE (2001). „Estimation of Aqueous Solubility of Chemical Compounds Using E-State Indices”. Chem Inf. Comput. Sci. 41: 1488—1493. PMID 11749573. doi:10.1021/ci000392t. 
  7. ^ Ertl P.; Rohde B.; Selzer P. (2000). „Fast calculation of molecular polar surface area as a sum of fragment based contributions and its application to the prediction of drug transport properties”. J. Med. Chem. 43: 3714—3717. PMID 11020286. doi:10.1021/jm000942e. 

Literatura уреди

Spoljašnje veze уреди


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