Direct writing of bio-functional coatings for cardiovascular applications.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 24497436.
- Also identified by DOI 10.1002/jbm.a.35105.
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Abstract
The surface modification of metallic biomaterials is of critical importance to enhance the biocompatibility of surgical implant materials and devices. This article investigates the use of a direct-write inkjet technique for multilayer coatings of a biodegradable polymer (polyester urethane urea (PEUU)) embedded with an anti-proliferation drug paclitaxel (Taxol). The direct-write inkjet technique provides selective patterning capability for depositing multimaterial coatings on three-dimensional implant devices such as pins, screws, and stents for orthopedic and vascular applications. Drug release profiles were studied to observe the influence of drug loading and coating thickness for obtaining tunable release kinetics. Platelet deposition studies were conducted following ovine blood contact and significant reduction in platelet deposition was observed on the Taxol loaded PEUU substrate compared with the unloaded control. Rat smooth muscle cells were used for cell proliferation studies. Significant reduction in cell growth was observed following the release of anti-proliferative drug from the biopolymer thin film. This research provides a basis for developing anti-proliferative biocompatible coatings for different biomedical device applications.
Medical subject headings
- Biodegradable Plastics
- Blood Platelets
- Coated Materials, Biocompatible
- Myocytes, Smooth Muscle
- Polyesters
- Printing, Three-Dimensional