Crystallization kinetics and molecular mobility of an amorphous active pharmaceutical ingredient: A case study with Biclotymol

Int J Pharm. 2015 Jul 25;490(1-2):248-57. doi: 10.1016/j.ijpharm.2015.05.036. Epub 2015 May 21.

Abstract

The present case study focuses on the crystallization kinetics and molecular mobility of an amorphous mouth and throat drug namely Biclotymol, through differential scanning calorimetry (DSC), temperature resolved X-ray powder diffraction (TR-XRPD) and hot stage microscopy (HSM). Kinetics of crystallization above the glass transition through isothermal and non-isothermal cold crystallization were considered. Avrami model was used for isothermal crystallization process. Non-isothermal cold crystallization was investigated through Augis and Bennett model. Differences between crystallization processes have been ascribed to a site-saturated nucleation mechanism of the metastable form, confirmed by optical microscopy images. Regarding molecular mobility, a feature of molecular dynamics in glass-forming liquids as thermodynamic fragility index m was determined through calorimetric measurements. It turned out to be around m=100, describing Biclotymol as a fragile glass-former for Angell's classification. Relatively long-term stability of amorphous Biclotymol above Tg was analyzed indirectly by calorimetric monitoring to evaluate thermodynamic parameters and crystallization behavior of glassy Biclotymol. Within eight months of storage above Tg (T=Tg+2°C), amorphous Biclotymol does not show a strong inclination to crystallize and forms a relatively stable glass. This case study, involving a multidisciplinary approach, points out the importance of continuing looking for stability predictors.

Keywords: Amorphous; Biclotymol; Biclotymol (PubChem CID: 71878); Crystallization; Molecular mobility; Nucleation; Stability.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Calorimetry, Differential Scanning / methods
  • Cold Temperature
  • Crystallization
  • Glass / chemistry
  • Kinetics
  • Molecular Dynamics Simulation
  • Pharmaceutical Preparations / chemistry*
  • Phenols / chemistry*
  • Powders / chemistry
  • Thermodynamics
  • Transition Temperature
  • X-Ray Diffraction / methods

Substances

  • Pharmaceutical Preparations
  • Phenols
  • Powders
  • 2,2-methylenebis(4-chloro-3-methyl-isopropylphenol)