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Controlling drug release with additive manufacturing-based solutions.

Authors :
Patel, Shriya K.
Khoder, Mouhamad
Peak, Matthew
Alhnan, Mohamed A.
Source :
Advanced Drug Delivery Reviews. Jul2021, Vol. 174, p369-386. 18p.
Publication Year :
2021

Abstract

[Display omitted] 3D printing is an innovative manufacturing technology with great potential to revolutionise solid dosage forms. Novel features of 3D printing technology confer advantage over conventional solid dosage form manufacturing technologies, including rapid prototyping and an unparalleled capability to fabricate complex geometries with spatially separated conformations. Such a novel technology could transform the pharmaceutical industry, enabling the production of highly personalised dosage forms with well-defined release profiles. In this work, we review the current state of the art of using additive manufacturing for predicting and understanding drug release from 3D printed novel structures. Furthermore, we describe a wide spectrum of 3D printing technologies, materials, procedure, and processing parameters used to fabricate fundamentally different matrices with different drug releases. The different methods to manipulate drug release patterns including the surface area-to-mass ratio, infill pattern, geometry, and composition, are critically evaluated. Moreover, the drug release mechanisms and models that could aid exploiting the release profile are also covered. Finally, this review also covers the design opportunities alongside the technical and regulatory challenges that these rapidly evolving technologies present. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
0169409X
Volume :
174
Database :
Academic Search Index
Journal :
Advanced Drug Delivery Reviews
Publication Type :
Review
Accession number :
150889717
Full Text :
https://doi.org/10.1016/j.addr.2021.04.020