Abstract
Microsponges are polymeric delivery systems consisting of porous microspheres having a size range in between 5 to 300 μm depending upon the degree of smoothness or after feel required for the end formulations. Microsponge Delivery System MDS is a unique technology for controlled delivery of drug. The present review introduces Microsponge technology along with its synthesis, characterization, programmable parameters and release mechanism of MDS. Wide ranges of applications are also suggested to develop drug or cosmetic products with enhanced safety and efficacy. MDS can provide increased efficacy for topically active agents with enhanced safety, extended product stability and improved aesthetic properties in an efficient and novel manner.
Keywords: Microsponge, quasi emulsion diffusion solvent method, free radical suspension polymerization, porous microsphere, release mechanism
Current Drug Delivery
Title: Microsponge Delivery System
Volume: 4 Issue: 2
Author(s): Vikrant Chadawar and Jessy Shaji
Affiliation:
Keywords: Microsponge, quasi emulsion diffusion solvent method, free radical suspension polymerization, porous microsphere, release mechanism
Abstract: Microsponges are polymeric delivery systems consisting of porous microspheres having a size range in between 5 to 300 μm depending upon the degree of smoothness or after feel required for the end formulations. Microsponge Delivery System MDS is a unique technology for controlled delivery of drug. The present review introduces Microsponge technology along with its synthesis, characterization, programmable parameters and release mechanism of MDS. Wide ranges of applications are also suggested to develop drug or cosmetic products with enhanced safety and efficacy. MDS can provide increased efficacy for topically active agents with enhanced safety, extended product stability and improved aesthetic properties in an efficient and novel manner.
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Cite this article as:
Chadawar Vikrant and Shaji Jessy, Microsponge Delivery System, Current Drug Delivery 2007; 4 (2) . https://dx.doi.org/10.2174/156720107780362320
DOI https://dx.doi.org/10.2174/156720107780362320 |
Print ISSN 1567-2018 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-5704 |
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