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Journal ArticleDOI

Cocrystalization and Simultaneous Agglomeration Using Hot Melt Extrusion

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TLDR
A single-step, scalable, solvent-free, continuous cocrystallization and agglomeration technology was developed using HME, offering flexibility for tailoring the cocrystal purity.
Abstract
To explore hot melt extrusion (HME) as a scalable, solvent-free, continuous technology to design cocrystals in agglomerated form. Cocrystal agglomerates of ibuprofen and nicotinamide in 1:1 ratio were produced using HME at different barrel temperature profiles, screw speeds, and screw configurations. Product was characterized for crystallinity by XRPD and DSC, while the morphology was determined by SEM. Dissolution rate and tabletting properties were compared with ibuprofen. Process parameters significantly affected the extent of cocrystallization which improved with temperature, applied shear and residence time. Processing above eutectic point was required for cocrystallization to occur, and it improved with mixing intensity by changing screw configuration. Product was in the form of spherical agglomerates, which showed directly compressible nature with enhanced dissolution rate compared to ibuprofen. This marks an important advantage over the conventional techniques, as it negates the need for further size modification steps. A single-step, scalable, solvent-free, continuous cocrystallization and agglomeration technology was developed using HME, offering flexibility for tailoring the cocrystal purity. HME being an established technology readily addresses the regulatory demand of quality by design (QbD) and process analytical technology (PAT), offering high potential for pharmaceuticals.

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Citations
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Journal ArticleDOI

Pharmaceutical cocrystals and poorly soluble drugs.

TL;DR: In this review the success of numerous pharmaceutical cocrystals for the improvement of the solubility and dissolution rates of poorly soluble drugs is demonstrated using various examples taken from the literature.
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Constructing Ultraporous Covalent Organic Frameworks in Seconds via an Organic Terracotta Process

TL;DR: A simple route toward the rapid synthesis of highly crystalline and ultraporous COFs in seconds using a novel salt-mediated crystallization approach and the regular COF beads are shown to outperform the leading zeolites in water sorption performance, with notably facile regeneration ability and structural integrity.
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Creating Cocrystals: A Review of Pharmaceutical Cocrystal Preparation Routes and Applications

TL;DR: Intensification of cocrystal research efforts has been accompanied by an expansion of the potential applications where cocrystals can offer a benefit, with particular emphasis placed on emerging technologies that can offer environmentally attractive and efficient applications.
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Mechanochemistry and organic synthesis: from mystical to practical

TL;DR: For a review of the state-of-the-art in mechanochemistry, see, e.g., this article, the review presented in this paper. But, there still remains some mystique guarding the "rules" of mechanochemistry.
Journal ArticleDOI

Synthesis by extrusion: continuous, large-scale preparation of MOFs using little or no solvent

TL;DR: Continuous flow mechanochemical and melt-phase synthesis at kg h–1 rates from solid reagents and either no solvent, or only minimal solvent, is reported.
References
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Journal ArticleDOI

Pharmaceutical Cocrystals and Their Physicochemical Properties

TL;DR: The advances made over the last 10 years pertaining to physical and chemical property improvements through pharmaceutical cocrystalline materials will be highlighted and discussed to draw closer the fields of crystal engineering and pharmaceutical sciences.
Journal ArticleDOI

Pharmaceutical Applications of Hot-Melt Extrusion: Part I

TL;DR: The pharmaceutical applications of hot-melt extrusion, including equipment, principles of operation, and process technology, are reviewed and the physicochemical properties of the resultant dosage forms are described.
Journal ArticleDOI

Solubility Advantage of Pharmaceutical Cocrystals

TL;DR: In this article, the authors developed a method to estimate the cocrystal solubility in pure solvent and establish the influence of constituent drug and ligand properties on cocrystals.
Journal ArticleDOI

Crystal engineering of novel cocrystals of a triazole drug with 1,4-dicarboxylic acids.

TL;DR: The results suggest that cocrystals of drug molecules have the possibility of achieving the higher oral bioavailability common for amorphous forms of water-insoluble drugs while maintaining the long-term chemical and physical stability that crystal forms provide.
Journal ArticleDOI

Use of a glutaric acid cocrystal to improve oral bioavailability of a low solubility API.

TL;DR: Use of the cocrystal increased the aqueous dissolution rate by 18 times as compared to the homomeric crystalline form of the drug and showed that it is unique regarding thermal, spectroscopic, X-ray, and dissolution properties.
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