Literature DB >> 25835212

Controlled and Extended Release of a Model Protein from a Microsphere-Hydrogel Drug Delivery System.

Christian R Osswald1, Jennifer J Kang-Mieler2.   

Abstract

In extended ocular drug delivery applications, it is necessary to exert control over the release characteristics of the drug. Design considerations must be made to limit the initial burst (IB) and ensure complete release of drug from the drug delivery system (DDS). In this study, ovalbumin was used as a model protein to explore the effects on release of polymer formulation and fabrication technique in poly(lactic-co-glycolic acid) (PLGA) microspheres. Furthermore, the effect on release of suspending these microspheres in an injectable, thermo-responsive poly(N-isopropylacrylamide)-based hydrogel was determined. To characterize release, ovalbumin was radiolabeled with iodine-125. Regardless of polymer formulation or fabrication technique, pulsatile release was achieved with a second burst occurring after ~70 days for microspheres alone. Suspending PLGA 75:25 microspheres within hydrogel reduced the IB by ~75%, delayed the second burst by 28 days, and extended release out to ~200 days with steadier, consistent release throughout compared to microspheres alone. The combined microsphere-hydrogel DDS remains injectable through small-gauge needles and may have many applications, namely ocular drug delivery to the posterior segment.

Entities:  

Keywords:  Hydrogel; Microspheres; Ocular drug delivery; Ovalbumin; Poly(N-isopropylacrylamide); Poly(lactic-co-glycolic acid)

Mesh:

Substances:

Year:  2015        PMID: 25835212     DOI: 10.1007/s10439-015-1314-7

Source DB:  PubMed          Journal:  Ann Biomed Eng        ISSN: 0090-6964            Impact factor:   3.934


  11 in total

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4.  Biodegradable Microsphere-Hydrogel Ocular Drug Delivery System for Controlled and Extended Release of Bioactive Aflibercept In Vitro.

Authors:  Wenqiang Liu; Bao-Shiang Lee; William F Mieler; Jennifer J Kang-Mieler
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Journal:  Transl Vis Sci Technol       Date:  2020-02-27       Impact factor: 3.283

9.  Treatment Efficacy and Biocompatibility of a Biodegradable Aflibercept-Loaded Microsphere-Hydrogel Drug Delivery System.

Authors:  Wenqiang Liu; Anessa Puskar Tawakol; Kayla M Rudeen; William F Mieler; Jennifer J Kang-Mieler
Journal:  Transl Vis Sci Technol       Date:  2020-10-13       Impact factor: 3.283

Review 10.  Nanotechnology for Age-Related Macular Degeneration.

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