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1.
Curr Pharm Des ; 24(13): 1357-1365, 2018.
Article in English | MEDLINE | ID: mdl-29278209

ABSTRACT

The properties of many drugs which have been available on the pharmaceutical market for a long time still need to be improved. Cocrystals are the solid state drug modification which can improve properties such as low solubility, stability and mechanical properties (e.g. compressibility). In this paper, examples of how to use cocrystals to modify properties of API (Active Pharmaceutical Ingredient) will be reported. Additionally, in this review, the way from an idea of the new cocrystal to drug dosage form registration will be shortly described.


Subject(s)
Pharmaceutical Preparations/chemistry , Crystallization , Drug Carriers , Humans , Pharmaceutical Preparations/administration & dosage , Solubility
2.
Adv Drug Deliv Rev ; 117: 111-146, 2017 08 01.
Article in English | MEDLINE | ID: mdl-28931472

ABSTRACT

The main goal of a novel drug development is to obtain it with optimal physiochemical, pharmaceutical and biological properties. Pharmaceutical companies and scientists modify active pharmaceutical ingredients (APIs), which often are cocrystals, salts or carefully selected polymorphs, to improve the properties of a parent drug. To find the best form of a drug, various advanced characterization methods should be used. In this review, we have described such analytical methods, dedicated to solid drug forms. Thus, diffraction, spectroscopic, thermal and also pharmaceutical characterization methods are discussed. They all are necessary to study a solid API in its intrinsic complexity from bulk down to the molecular level, gain information on its structure, properties, purity and possible transformations, and make the characterization efficient, comprehensive and complete. Furthermore, these methods can be used to monitor and investigate physical processes, involved in the drug development, in situ and in real time. The main aim of this paper is to gather information on the current advancements in the analytical methods and highlight their pharmaceutical relevance.


Subject(s)
Pharmaceutical Preparations/analysis , Calorimetry, Differential Scanning , Crystallization , Molecular Structure , Pharmaceutical Preparations/chemistry , Salts , Thermogravimetry
3.
Int J Pharm ; 522(1-2): 80-89, 2017 Apr 30.
Article in English | MEDLINE | ID: mdl-28274662

ABSTRACT

The aim of this study was to evaluate the stability and solubility of the polymorphic forms of the ethenzamide (ET) - gentisic acid (GA) cocrystals during standard technological processes leading to tablet formation, such as compression and excipient addition. In this work two polymorphic forms of pharmaceutical cocrystals (ETGA) were characterized by 13C and 15N solid-state nuclear magnetic resonance and Fourier transformed infrared spectroscopy. Spectroscopic studies were supported by gauge including projector augmented wave (GIPAW) calculations of chemical shielding constants.Polymorphs of cocrystals were easily identified and characterized on the basis of solid-state spectroscopic studies. ETGA cocrystals behaviour during direct compressionand tabletting with excipient addition were tested. In order to choose the best tablet composition with suitable properties for the pharmaceutical industry dissolution profile studies of tablets containing polymorphic forms of cocrystals with selected excipients were carried out.


Subject(s)
Gentisates/chemistry , Salicylamides/chemistry , Chemistry, Pharmaceutical , Crystallization , Delayed-Action Preparations , Drug Compounding , Drug Liberation , Drug Stability , Magnetic Resonance Spectroscopy , Solubility , Spectroscopy, Fourier Transform Infrared , Tablets
4.
J Pharm Biomed Anal ; 100: 322-328, 2014 Nov.
Article in English | MEDLINE | ID: mdl-25194346

ABSTRACT

In this work, three polycrystalline materials containing co-crystals of theophylline with malonic, maleic, and glutaric acids were studied using (13)C, (15)N and (1)H solid-state NMR and FT-IR spectroscopy. The NMR assignments were supported by gauge including projector augmented waves (GIPAW) calculations of chemical shielding, performed using X-ray determined geometry. The experimental (13)C cross polarization/magic angle spinning (CP/MAS) NMR results and the calculated isotropic chemical shifts were in excellent agreement. A rapid and convenient method for theophylline co-crystals crystal structure analysis has been proposed for co-crystals, which are potentially new APIs.


Subject(s)
Dicarboxylic Acids/chemistry , Magnetic Resonance Spectroscopy , Technology, Pharmaceutical/methods , Theophylline/chemistry , Chemistry, Pharmaceutical , Crystallization , Crystallography, X-Ray , Glutarates/chemistry , Hydrogen Bonding , Kinetics , Maleates/chemistry , Malonates/chemistry , Molecular Structure , Spectroscopy, Fourier Transform Infrared , Theophylline/analogs & derivatives
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