Bone formation on two‐dimensional poly(DL‐lactide‐co‐glycolide) (PLGA) films and three‐dimensional PLGA tissue engineering scaffolds in vitro
- 31 December 2002
- journal article
- research article
- Published by Wiley in Journal of Biomedical Materials Research Part A
- Vol. 64A (2) , 388-396
- https://doi.org/10.1002/jbm.a.10420
Abstract
For some bone tissue engineering strategies, direct contact of newly synthesized bone with a scaffold is important for structural continuity and stability at the scaffold/bone interface. Thus, as the polymer degrades, the support function of the scaffold could be adopted by the developing bone structure. This study was designed to determine whether poly(DL-lactide-co-glycolide) with a comonomer ratio of 75:25 supports bone apposition in vitro. Osteogenic cells derived from rat bone marrow cells were cultured for 2 weeks on polymeric two-dimensional films and three-dimensional tissue engineering scaffolds. Bacteriological grade polystyrene and tissue culture polystyrene dishes served as negative and positive controls for interfacial bone deposition, respectively. The surfaces of the prepared substrates were characterized by X-ray photoelectron spectroscopy, dynamic water contact angle, scanning electron microscopy, and atomic force microscopy. After cell culture, the elaborated matrix was examined using scanning electron microscopy, transmission electron microscopy, and energy dispersive spectroscopy. The results show that poly(DL-lactide-co-glycolide) supports appositional bone growth on both two-dimensional films and three-dimensional scaffolds, including the formation of a mineralized cement line matrix. Furthermore, surface topographical features are not required for the adherence of the cement line matrix to the polymer. © 2002 Wiley Periodicals, Inc. J Biomed Mater Res 64A: 388–396, 2003Keywords
This publication has 20 references indexed in Scilit:
- Engineered Bone Development from a Pre-Osteoblast Cell Line on Three-Dimensional ScaffoldsTissue Engineering, 2000
- Polymer Bulk ErosionMacromolecules, 1997
- Sterilization, toxicity, biocompatibility and clinical applications of polylactic acid/ polyglycolic acid copolymersBiomaterials, 1996
- Protein release kinetics of a biodegradable implant for fracture non-unionsBiomaterials, 1995
- A Multiphase System Bone Implant for Regenerating the CalvariaPlastic and Reconstructive Surgery, 1993
- Mechanisms of biodegradation of implantable polymersClinical Materials, 1992
- Review : Polymers for Absorbable Surgical Sutures—Part IIJournal of Bioactive and Compatible Polymers, 1991
- Composition of the cement line and its possible mechanical role as a local interface in human compact boneJournal of Biomechanics, 1988
- Morphology of the osteonal cement line in human boneThe Anatomical Record, 1987
- Acidification of Phagosomes in Murine Macrophages: Blockage by Nocardia asteroidesThe Journal of Infectious Diseases, 1986