Scinovex
article Open AccessTop 1% cited

Applying Hot-Stage Microscopy to Co-Crystal Screening: A Study of Nicotinamide with Seven Active Pharmaceutical Ingredients

Crystal Growth & Design · 2008 · Vol. 8(5) · pp. 1697–1712
David J. BerryColin C. SeatonW. CleggRoss W. HarringtonSimon J. ColesPeter N. HortonMichael B. HursthouseRichard StoreyWilliam JonesTomislav FriščićN. Blagden

Abstract

Co-crystal screening is routinely undertaken using high-throughput solution growth. We report a low- to medium-throughput approach, encompassing both a melt and solution crystallization step as a route to the identification of co-crystals. Prior to solution studies, a melt growth step was included utilizing the Kofler mixed fusion method. This method allowed elucidation of the thermodynamic landscape within the binary phase diagram and was found to increase overall screening efficiency. The pharmaceutically acceptable adduct nicotinamide was selected and screened against a small set of active pharmaceutical ingredients (APIs) (ibuprofen (both the racemic compound (R/S) and S-enantiomer), fenbufen, flurbiprofen (R/S), ketoprofen (R/S), paracetamol, piracetam, and salicylic acid) as part of a larger systematic study of synthon stability. From the screen, three new co-crystal systems have been identified (ibuprofen (R/S and S) and salicylic acid) and their crystal structures determined. Because of poor crystal growth synchrotron radiation was required for structure solution of the S-ibuprofen nicotinamide co-crystal. Two further potential systems have also been discovered (fenbufen and flurbiprofen), but crystals suitable for structure determination have yet to be obtained. A greater ability to control crystallization kinetics is required to yield phase-pure single-crystalline material for full verification of this crystal engineering strategy.

Crystallization and Solubility StudiesCrystallography and molecular interactionsEnzyme Structure and FunctionChemistryFlurbiprofenCrystallizationCrystal growthActive ingredientCrystal (programming language)NicotinamideCrystallographyOrganic chemistryChromatography

Funding

  • Engineering and Physical Sciences Research Council
  • Science and Technology Facilities Council
Citations
343
FWCI
11.85
field-weighted impact
References
49
Percentile
99%
vs. same field & year
Citations per year
Cited by
Pharmaceutical cocrystals: along the path to improved medicines
Chemical Communications · 2015 · 902 citations
Mechanochemistry: opportunities for new and cleaner synthesis
Chemical Society Reviews · 2011 · 2,928 citations
Pharmaceutical cocrystals: An overview
International Journal of Pharmaceutics · 2011 · 642 citations
Pharmaceutical cocrystals and poorly soluble drugs
International Journal of Pharmaceutics · 2012 · 592 citations
An overview of recent studies on the analysis of pharmaceutical polymorphs
Journal of Pharmaceutical and Biomedical Analysis · 2010 · 275 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.