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Rokuronijum bromid

Izvor: Wikipedija
Rokuronijum bromid
Klinički podaci
Robne marke Esmeron, Zemuron
AHFS/Drugs.com bromide.html Monografija
Identifikatori
CAS broj 119302-91-9
ATC kod M03AC09
PubChem[1][2] 441290
DrugBank DB00728
ChemSpider[3] 390053
ChEBI CHEBI:8884 DaY
ChEMBL[4] CHEMBL1201244 DaY
Hemijski podaci
Formula C32H53N2O4 
Mol. masa 529,774
SMILES eMolekuli & PubHem
Farmakokinetički podaci
Poluvreme eliminacije 1-2 minuta
Farmakoinformacioni podaci
Trudnoća ?
Pravni status
Način primene Intravenozno

Rokuronijum bromid je organsko jedinjenje, koje sadrži 32 atoma ugljenika i ima molekulsku masu od 529,774 Da.[5][6][7][8][9][10][11]

Osobine

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Osobina Vrednost
Broj akceptora vodonika 5
Broj donora vodonika 1
Broj rotacionih veza 6
Particioni koeficijent[12] (ALogP) 2,7
Rastvorljivost[13] (logS, log(mol/L)) -7,8
Polarna površina[14] (PSA, Å2) 59,0

Reference

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  1. Li Q, Cheng T, Wang Y, Bryant SH (2010). „PubChem as a public resource for drug discovery.”. Drug Discov Today 15 (23-24): 1052-7. DOI:10.1016/j.drudis.2010.10.003. PMID 20970519.  edit
  2. Evan E. Bolton, Yanli Wang, Paul A. Thiessen, Stephen H. Bryant (2008). „Chapter 12 PubChem: Integrated Platform of Small Molecules and Biological Activities”. Annual Reports in Computational Chemistry 4: 217-241. DOI:10.1016/S1574-1400(08)00012-1. 
  3. Hettne KM, Williams AJ, van Mulligen EM, Kleinjans J, Tkachenko V, Kors JA. (2010). „Automatic vs. manual curation of a multi-source chemical dictionary: the impact on text mining”. J Cheminform 2 (1): 3. DOI:10.1186/1758-2946-2-3. PMID 20331846.  edit
  4. Gaulton A, Bellis LJ, Bento AP, Chambers J, Davies M, Hersey A, Light Y, McGlinchey S, Michalovich D, Al-Lazikani B, Overington JP. (2012). „ChEMBL: a large-scale bioactivity database for drug discovery”. Nucleic Acids Res 40 (Database issue): D1100-7. DOI:10.1093/nar/gkr777. PMID 21948594.  edit
  5. Agoston S, Vandenbrom RH, Wierda JM: Clinical pharmacokinetics of neuromuscular blocking drugs. Clin Pharmacokinet. 1992 Feb;22(2):94-115. PMID 1551294
  6. Khuenl-Brady KS, Sparr H: Clinical pharmacokinetics of rocuronium bromide. Clin Pharmacokinet. 1996 Sep;31(3):174-83. PMID 8877248
  7. Alvarez-Gomez JA: [Rocuronium] Rev Esp Anestesiol Reanim. 1997 Oct;44(8):310-4. PMID 9424684
  8. Wicks TC: The pharmacology of rocuronium bromide (ORG 9426). AANA J. 1994 Feb;62(1):33-8. PMID 8122487
  9. Sparr HJ, Beaufort TM, Fuchs-Buder T: Newer neuromuscular blocking agents: how do they compare with established agents? Drugs. 2001;61(7):919-42. PMID 11434449
  10. 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. DOI:10.1093/nar/gkq1126. PMC 3013709. PMID 21059682.  edit
  11. David S. Wishart, Craig Knox, An Chi Guo, Dean Cheng, Savita Shrivastava, Dan Tzur, Bijaya Gautam, and Murtaza Hassanali (2008). „DrugBank: a knowledgebase for drugs, drug actions and drug targets”. Nucleic Acids Res 36 (Database issue): D901-6. DOI:10.1093/nar/gkm958. PMC 2238889. PMID 18048412.  edit
  12. Ghose, A.K., Viswanadhan V.N., and 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. 
  13. 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. DOI:10.1021/ci000392t. PMID 11749573.  edit
  14. 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. DOI:10.1021/jm000942e. PMID 11020286.  edit

Literatura

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Spoljašnje veze

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