Cytotoxicity testing of poly(anhydride‐co‐imides) for orthopedic applications
- 1 October 1995
- journal article
- research article
- Published by Wiley in Journal of Biomedical Materials Research
- Vol. 29 (10) , 1233-1240
- https://doi.org/10.1002/jbm.820291010
Abstract
The cytotoxicity of a series of poly(anhydride‐co‐imides) with osteoblast‐like cells (MC3T3‐E1) was evaluated. The imide component of the copolymers was based on trimellitylimidoglycine (TMA‐gly), and the anhydride component was based on either sebacic acid (SA) or 1,6‐bis(carboxyphenoxy)hexane (CPH). Cell adhesion and proliferation on surfaces of the polymer discs were observed by environmental scanning electron microscopy (ESEM). During the first 24 h of attachment, cells showed normal morphology when cultured on the various copolymers of CPH. Concurrently, the effects of polymer breakdown products on osteoblast‐like cells were evaluated by studying their proliferation (cell numbers), viability (dye exclusion), and morphology (light microscopy). Cell cultures in the presence of these breakdown products resulted in normal morphologies and reached confluency after 7 days. This initial in vitro evaluation with osteoblast‐like cells suggests that the poly‐(anhydride‐co‐imides) may be viable carriers for osteoblasts. © 1995 John Wiley & Sons, Inc.Keywords
This publication has 20 references indexed in Scilit:
- Osteoblast culture on bioerodible polymers: studies of initial cell adhesion and spreadPolymers for Advanced Technologies, 1992
- Osteoblasts on hydroxyapatite, alumina and bone surfaces in vitro; morphology during the first 2 h of attachmentBiomaterials, 1992
- Tissue Engineering by Cell Transplantation Using Degradable Polymer SubstratesJournal of Biomechanical Engineering, 1991
- Preliminary studies on the phenomenological behaviour of osteoblasts cultured on hydroxyapatite ceramicsBiomaterials, 1990
- Cell growth on metallic glasses: The interaction of amorphous metal alloys with cultured neuronal, osteoblast, endothelial, and fibroblast cellsJournal of Biomedical Materials Research, 1988
- Development of a new system for evaluating the biocompatibility of implant materials using an osteogenic cell line (MC3T3‐E1)Journal of Biomedical Materials Research, 1988
- Protein adsorption at the interface between charged polymer substrata and migrating osteoblastsBiomaterials, 1988
- Biodegradable Bone Repair MaterialsClinical Orthopaedics and Related Research, 1986
- Growth of fibroblasts and epithelioid cells on a new machinable bioactive glass ceramic in comparison with non-reactive materialsExperimental pathology, 1984
- In vitro differentiation and calcification in a new clonal osteogenic cell line derived from newborn mouse calvaria.The Journal of cell biology, 1983