One-step fabrication of triple-layered polymeric microparticles with layer localization of drugs as a novel drug-delivery system

Wei Li Lee, Effendi Widjaja, Say Chye Joachim Loo

Research output: Contribution to journalArticlepeer-review

45 Citations (Scopus)

Abstract

Particulate systems have tremendous potential to achieve controlled release and targeted delivery of drugs. However, conventional single-layered particles have several inherent limitations, including initial burst release, the inability to provide zero-order release, and a lack of time-delayed or pulsatile release of therapeutic agents. Multilayered particles have the potential to overcome these disadvantages. Herein, it is shown how triplelayered polymeric microparticles can be fabricated through a simple, economical, reliable, and versatile one-step solvent evaporation technique. Particle morphologies and layer configurations are determined by scanning electron microscopy, polymer dissolution tests, and Raman mapping. Key fabrication parameters that affect the formation of triple-layered polymeric microparticles comprising poly(DL-lactide-co-glycolide) (50:50), poly- (L-lactide), and poly(ethylene-co-vinyl acetate) (40wt% vinyl acetate) are discussed, along with their formation mechanisms. Layer thickness and the configurations of these microparticles are altered by changing the polymer mass ratios. Finally, it is shown that drugs can be localized in specific layers of the microparticles. This fabrication process can therefore be used to tailor microparticle designs, thus allowing such <designer> particulate drugdelivery systems to function across a wide range of applications.

Original languageEnglish
Pages (from-to)1003-1011
Number of pages9
JournalSmall
Volume6
Issue number9
DOIs
Publication statusPublished - May 7 2010
Externally publishedYes

ASJC Scopus Subject Areas

  • Biotechnology
  • Biomaterials
  • General Chemistry
  • General Materials Science

Keywords

  • Drug delivery
  • Microparticles
  • Multilayers
  • Polymers
  • Solvent evaporation

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