articleTop 1% cited
Crystal engineering of the composition of pharmaceutical phases. Do pharmaceutical co-crystals represent a new path to improved medicines?
Chemical Communications · 2004 · pp. 1889–1889
�rn AlmarssonMichael J. Zaworotko✉(University of South Florida)
Abstract
The evolution of crystal engineering into a form of supramolecular synthesis is discussed in the context of problems and opportunities in the pharmaceutical industry. Specifically, it has become clear that a wide array of multiple component pharmaceutical phases, so called pharmaceutical co-crystals, can be rationally designed using crystal engineering, and the strategy affords new intellectual property and enhanced properties for pharmaceutical substances.
Crystallography and molecular interactionsCrystallization and Solubility StudiesEnzyme Structure and FunctionCrystal engineeringContext (archaeology)Pharmaceutical industrySupramolecular chemistryCrystal (programming language)Component (thermodynamics)Materials sciencePharmaceutical engineeringComposition (language)Crystallization
MeSH terms
AcidsAmidesCarboxylic AcidsChemistry, PharmaceuticalCrystallizationCrystallographyDrug StabilityPharmaceutical PreparationsHydrogen BondingOrganic ChemicalsTechnology, PharmaceuticalMolecular StructurePhase Transition
Citations
1,053
FWCI
31.44
field-weighted impact
References
32
Percentile
100%
vs. same field & year
Citations per year
Cited by
Effects of Crystal Form on Solubility and Pharmacokinetics: A Crystal Engineering Case Study of Lamotrigine
Crystal Growth & Design · 2009 · 247 citations
Applying Hot-Stage Microscopy to Co-Crystal Screening: A Study of Nicotinamide with Seven Active Pharmaceutical Ingredients
Crystal Growth & Design · 2008 · 343 citations
Solubility Advantage of Amorphous Drugs and Pharmaceutical Cocrystals
Crystal Growth & Design · 2011 · 977 citations
Hierarchy of Supramolecular Synthons: Persistent Carboxylic Acid···Pyridine Hydrogen Bonds in Cocrystals That also Contain a Hydroxyl Moiety
Crystal Growth & Design · 2008 · 469 citations
Pharmaceutical Cocrystals and Their Physicochemical Properties
Crystal Growth & Design · 2009 · 1,459 citations
Cambridge Structural Database Analysis of Molecular Complementarity in Cocrystals
Crystal Growth & Design · 2009 · 279 citations
Pharmaceutical cocrystals: along the path to improved medicines
Chemical Communications · 2015 · 902 citations
Synthesis and Structural Characterization of Cocrystals and Pharmaceutical Cocrystals: Mechanochemistry vs Slow Evaporation from Solution
Crystal Growth & Design · 2009 · 440 citations
References
What is the True Solubility Advantage for Amorphous Pharmaceuticals?
Pharmaceutical Research · 2000 · 1,334 citations
The nature of the chemical bond—1992
Journal of Chemical Education · 1992 · 13,126 citations
From Molecules to Crystal Engineering: Supramolecular Isomerism and Polymorphism in Network Solids
Chemical Reviews · 2001 · 6,362 citations
Encoding and decoding hydrogen-bond patterns of organic compounds
Accounts of Chemical Research · 1990 · 4,564 citations
Supramolecular Synthons in Crystal Engineering—A New Organic Synthesis
Angewandte Chemie International Edition in English · 1995 · 4,793 citations
Photodimerization in the solid state
Pure and Applied Chemistry · 1971 · 2,051 citations
Characterization of Habits and Crystalline Modification of Solids and Their Pharmaceutical Applications
Journal of Pharmaceutical Sciences · 1975 · 480 citations
Comparison of the Four Anhydrous Polymorphs of Carbamazepine and the Crystal Structure of Form I**Supplementary material: X‐ray crystallographic information file (CIF) of triclinic CBZ (form I) is available.
Journal of Pharmaceutical Sciences · 2003 · 504 citations
Citation Network
How this paper connects to the literature. Drag to explore, click any node to open that paper.
