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Synergistic role of self-emulsifying lipids and nanostructured porous silica particles in optimizing the oral delivery of lovastatin.

Authors :
Rao, Shasha
Tan, Angel
Boyd, Ben J
Prestidge, Clive A
Source :
Nanomedicine; Dec2014, Vol. 9 Issue 18, p2745-2759, 15p
Publication Year :
2014

Abstract

Aim: To investigate the role of self-emulsifying lipids and porous silica particles in enhancing supersaturated drug loading and biopharmaceutical performance of nanostructured silica-lipid hybrid (SLH) systems. Materials & methods: Two lovastatin (LOV)-SLHs were engineered from self-emulsifying lipid (Gelucire<superscript>®</superscript> 44/14; Gattefossé, Lyon, France) and Aerosil<superscript>®</superscript> 380 (SLH-A; Evonik Industries, Essen, Germany) or Syloid<superscript>®</superscript> 244FP silica (SLH-S; Grace Davison Discovery Sciences, Rowville, Australia). Results & discussion: The LOV-SLHs encapsulated LOV at 10% w/w, which is ≥3-fold higher than typical lipid formulations in the absence of porous silica. The LOV-SLHs retained self-emulsifying lipid-associated solubilization benefits and improved drug solubilization by twofold in simulated intestinal condition. SLH-S, with larger surface area (299 m<superscript>2</superscript>/g), was superior to SLH-A (184 m<superscript>2</superscript>/g) in optimizing oral bioavailability, suggesting a critical role of the silica geometry. Bioavailability of SLH-S was 2.8- and 1.3-fold higher than pure drug and drug suspension in Gelucire 44/14, respectively. Conclusion: In conclusion, SLHs profit from advantages associated with both self-emulsifying lipids and porous silica, and provide potentially improved therapy against coronary artery disease. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
17435889
Volume :
9
Issue :
18
Database :
Complementary Index
Journal :
Nanomedicine
Publication Type :
Academic Journal
Accession number :
100428428
Full Text :
https://doi.org/10.2217/nnm.14.37