PubMed · 10880112
Comparative study of seeding methods for three-dimensional polymeric scaffolds.
Abstract
Development of tissue-engineered devices may be enhanced by combining cells with porous absorbable polymeric scaffolds before implantation. The cells are seeded throughout the scaffolds and allowed to proliferate in vitro for a predetermined amount of time. The distribution of cells throughout the porous material is one critical component determining success or failure of the tissue-engineered device. This can influence both the successful integration of the device with the host tissue as well as the development of a vascularized network throughout the entire scaffold volume. This research sought to compare different seeding and proliferation methods to select an ideal method for a polyglycolide/aortic endothelial cell system. Two seeding environments, static and dynamic, and three proliferation environments, static, dynamic, and bioreactor, were analyzed, for a total of six possible methods. The six seeding and proliferation combinations were analyzed following a 1-week total culture time. It was determined that for this specific system, dynamic seeding followed by a dynamic proliferation phase is the least promising method and dynamic seeding followed by a bioreactor proliferation phase is the most promising.
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K J Burg, W D Holder, C R Culberson, R J Beiler, K G Greene, A B Loebsack, W D Roland, P Eiselt, D J Mooney, C R Halberstadt. 2000-09-15. Comparative study of seeding methods for three-dimensional polymeric scaffolds.. https://doi.org/10.1002/1097-4636(20000915)51%3A4%3C642%3A%3Aaid-jbm12%3E3.0.co%3B2-l
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