Effect of particle size on thein vitro andin vivo degradation rates of poly(DL-lactide-co-glycolide) microcapsules
- 1 August 1988
- journal article
- research article
- Published by Wiley in Journal of Biomedical Materials Research
- Vol. 22 (8), 733-746
- https://doi.org/10.1002/jbm.820220806
Abstract
Three different sieve size fractions of ergotcontaining biodegradable microcapsules were examined both in vitro and in vivo. The sieve sizes and average particle diameter, (μm), were: less than 45–75 (X̄ = 30); 75–106 (X̄ = 79), 106–177 (X̄ = 130). These microcapsules contained ca. 9% drug and were produced from 50:50 poly(DL-lactide-co-glycolide). The objective was to determine the effect of particle size on in vivo and in vitro degradation rates. The microcapsules were injected into rat gastrocnemius muscle and excised and examined at various time points up to 70 days. Initially a minimal tissue response was noted which was characterized by a sharply localized acute inflammatory reaction. Following this, connective tissue and foreign body giant cells engulfed the microcapsules at 20–30 days. Only vestiges of the microcapsules were found surrounded by minimal connective tissue and foreign body giant cells after 60–70 days. The tissue reaction was a minimal, sharply localized foreign body giant cell and connective tissue process for all three size groups of microcapsules. The largest microcapsules (X̄ = 130 μm) exhibited a slightly greater tendency to undergo in vivo and in vitro degradation relative to the other groups. However, it can be concluded that over the microcapsule size ranges examined minimal differences in the degradation properties of the polymeric matrices and consequently those of the microcapsules were noted.This publication has 11 references indexed in Scilit:
- Evaluation of biodegradable microspheres prepared by a solvent evaporation process using sodium oleate as emulsifierJournal of Controlled Release, 1986
- Biodegradation of and tissue reaction to poly(DL‐lactide) microcapsulesJournal of Biomedical Materials Research, 1986
- Biodegradable microcapsules: Acceleration of polymeric excipient hydrolytic rate by incorporation of a basic medicamentJournal of Controlled Release, 1986
- Biodegradable polymers for the sustained release of peptidesBiochemical Society Transactions, 1985
- Biodegradation of and tissue reaction to 50:50 poly(DL‐lactide‐co‐glycolide) microcapsulesJournal of Biomedical Materials Research, 1985
- A New Long-Acting Injectable Microcapsule System for the Administration of ProgesteroneFertility and Sterility, 1979
- The specificity of polymer degradation in the living bodyJournal of Polymer Science: Polymer Symposia, 1979
- Studies on the phagocytic capacity of macrophage polykaryonsThe Journal of Pathology, 1977
- Tissue response to implanted polymers: The significance of sample shapeJournal of Biomedical Materials Research, 1976
- Polyglycolic Acid Surgical SutureArchives of Surgery, 1970