Surface Chemistry Influences Implant Biocompatibility
Top Cited Papers
- 1 March 2008
- journal article
- review article
- Published by Bentham Science Publishers Ltd. in Current Topics in Medicinal Chemistry
- Vol. 8 (4) , 270-280
- https://doi.org/10.2174/156802608783790901
Abstract
Implantable medical devices are increasingly important in the practice of modern medicine. Unfortunately, almost all medical devices suffer to a different extent from adverse reactions, including inflammation, fibrosis, thrombosis and infection. To improve the safety and function of many types of medical implants, a major need exists for development of materials that evoked desired tissue responses. Because implant-associated protein adsorption and conformational changes thereafter have been shown to promote immune reactions, rigorous research efforts have been emphasized on the engineering of surface property (physical and chemical characteristics) to reduce protein adsorption and cell interactions and subsequently improve implant biocompatibility. This brief review is aimed to summarize the past efforts and our recent knowledge about the influence of surface functionality on protein:cell:biomaterial interactions. It is our belief that detailed understandings of bioactivity of surface functionality provide an easy, economic, and specific approach for the future rational design of implantable medical devices with desired tissue reactivity and, hopefully, wound healing capability.Keywords
This publication has 98 references indexed in Scilit:
- Fibrinogen Contains Cryptic PAI-1 Binding Sites That Are Exposed on Binding to Solid Surfaces or Limited ProteolysisArteriosclerosis, Thrombosis, and Vascular Biology, 2005
- Interactions of Thrombin with Fibrinogen Adsorbed on Methyl-, Hydroxyl-, Amine-, and Carboxyl-Terminated Self-Assembled MonolayersBiochemistry, 2005
- Interpretation of Protein Adsorption: Surface-Induced Conformational ChangesJournal of the American Chemical Society, 2005
- Quantification of the kinetics and thermodynamics of protein adsorption using atomic force microscopyJournal of Biomedical Materials Research Part A, 2005
- Surface chemistry mediates adhesive structure, cytoskeletal organization, and fusion of macrophagesJournal of Biomedical Materials Research Part A, 2004
- Platelet adhesion onto chargeable functional group gradient surfacesJournal of Biomedical Materials Research, 1998
- Cell and soft tissue interactions with methyl- and hydroxyl-terminated alkane thiols on gold surfacesBiomaterials, 1997
- Residence time effects on monoclonal antibody binding to adsorbed fibrinogenJournal of Biomaterials Science, Polymer Edition, 1995
- Experience with the Leeds-Keio artificial ligament for anterior cruciate ligament reconstructionKnee Surgery, Sports Traumatology, Arthroscopy, 1994
- Structure of adsorbed fibrinogen obtained by scanning force microscopyFEBS Letters, 1991