A Comparative Study of Molecular Structure, pKa, Lipophilicity, Solubility, Absorption and Polar Surface Area of Some Antiplatelet Drugs

Milan Remko*, Anna Remkova, Ria Broer

*Corresponding author for this work

Research output: Contribution to journalArticleAcademicpeer-review

31 Citations (Scopus)
356 Downloads (Pure)

Abstract

Theoretical chemistry methods have been used to study the molecular properties of antiplatelet agents (ticlopidine, clopidogrel, prasugrel, elinogrel, ticagrelor and cangrelor) and several thiol-containing active metabolites. The geometries and energies of most stable conformers of these drugs have been computed at the Becke3LYP/6-311++G(d,p) level of density functional theory. Computed dissociation constants show that the active metabolites of prodrugs (ticlopidine, clopidogrel and prasugrel) and drugs elinogrel and cangrelor are completely ionized at pH 7.4. Both ticagrelor and its active metabolite are present at pH = 7.4 in neutral undissociated form. The thienopyridine prodrugs ticlopidine, clopidogrel and prasugrel are lipophilic and insoluble in water. Their lipophilicity is very high (about 2.5-3.5 logP values). The polar surface area, with regard to the structurally-heterogeneous character of these antiplatelet drugs, is from very large interval of values of 3-255 angstrom(2). Thienopyridine prodrugs, like ticlopidine, clopidogrel and prasugrel, with the lowest polar surface area (PSA) values, exhibit the largest absorption. A high value of polar surface area (PSA) of cangrelor (255 angstrom(2)) results in substantial worsening of the absorption in comparison with thienopyridine drugs.

Original languageEnglish
Article number388
Number of pages18
JournalInternational Journal of Molecular Sciences
Volume17
Issue number3
DOIs
Publication statusPublished - 19-Mar-2016

Keywords

  • antiplatelet agents
  • pKa
  • polar surface area
  • solubility
  • solvent effect
  • absorption
  • lipophilicity
  • molecular structure
  • CLINICAL DEVELOPMENT
  • ACTIVE METABOLITE
  • CRYSTAL-STRUCTURE
  • CLOPIDOGREL
  • PRASUGREL
  • TICLOPIDINE
  • THIENOPYRIDINE
  • PREDICTION
  • RECEPTOR
  • THERAPY

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