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Journal ArticleDOI

Pharmaceutical Applications of Hot-Melt Extrusion: Part I

TLDR
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.
Abstract
Interest in hot-melt extrusion techniques for pharmaceutical applications is growing rapidly with well over 100 papers published in the pharmaceutical scientific literature in the last 12 years. Hot-melt extrusion (HME) has been a widely applied technique in the plastics industry and has been demonstrated recently to be a viable method to prepare several types of dosage forms and drug delivery systems. Hot-melt extruded dosage forms are complex mixtures of active medicaments, functional excipients, and processing aids. HME also offers several advantages over traditional pharmaceutical processing techniques including the absence of solvents, few processing steps, continuous operation, and the possibility of the formation of solid dispersions and improved bioavailability. This article, Part I, reviews the pharmaceutical applications of hot-melt extrusion, including equipment, principles of operation, and process technology. The raw materials processed using this technique are also detailed and the physicochemical properties of the resultant dosage forms are described. Part II of this review will focus on various applications of HME in drug delivery such as granules, pellets, immediate and modified release tablets, transmucosal and transdermal systems, and implants.

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Journal ArticleDOI

Mechanistic study of preparation of drug/polymer/surfactant ternary hot extrudates to obtain small and stable drug nanocrystal suspensions.

TL;DR: This paper studied optimized conditions for preparing ternary hot extrudates (HEs) of glibenclamide (GLB)/polyvinylpyrrolidone (PVP)/sodium dodecyl sulfate to generate stable nanocrystal suspensions following aqueous dispersion.
Journal ArticleDOI

Towards predicting the product quality in hot-melt extrusion: Pilot plant scale extrusion.

TL;DR: In this paper, the influence of process settings and different scale-up variants on the active pharmaceutical ingredient (API) degradation in a pilot plant scale extruder was investigated and none of them could replicate the product quality from the original process setup on a lab-scale extruder.
Journal ArticleDOI

Shellac- a natural carrier for colon targeting of indomethacin using Hot melt extrusion.

TL;DR: Indomethacin (IND) is one of the supporting drug candidates for colonic targeting but it belongs to BCS class II category presenting a challenge in optimal targeting at the colonic site.
Journal ArticleDOI

Technical and Formulation Aspects of Pharmaceutical Co‐Crystallization: A Systematic Review

TL;DR: In this article , a literature review discusses the different types of cocrystals, their mechanisms, methods, and their applications, as well as their characterization and their advantages and disadvantages.
Journal ArticleDOI

pH-independent immediate release polymethacrylate formulations--an observational study.

TL;DR: In vitro dissolution experiments revealed that a minimum of 25% of quaternization was sufficient to partially eliminate the pH-dependent effect of the EudrE/IBP formulation and the presence of a positively charged polymer induced stability issues and the formulations containing dicarboxylic acids were classified as mechanically unstable.
References
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Book

Polymer Science and Technology

Joel Fried
TL;DR: The authors provided the basic building blocks of polymer science and engineering by coverage of fundamental polymer chemistry and materials topics given in Chapters 1 through 7 and provided information on the exciting new materialsnow available and the emerging areas of technological growth that could motivate a new generation of scientists and engineers.
Journal ArticleDOI

Spectroscopic characterization of interactions between PVP and indomethacin in amorphous molecular dispersions.

TL;DR: A comparison of the carbonyl stretching region of γ indomethacin, known to form carboxylic acid dimers, with that of amorphous indometHacin indicated that the amorphously phase exists predominantly as dimers.
Book

Principles of polymer engineering

TL;DR: In this article, the elastic properties of polymeric solids and their properties of rubber are discussed. But they focus on the structure of the molecule rather than the properties of the solids.
Journal ArticleDOI

Melt extrusion: from process to drug delivery technology

TL;DR: Improved bioavailability was achieved again demonstrating the value of the technology as a drug delivery tool, with particular advantages over solvent processes like co-precipitation.
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