A novel bioactive sponge was created with a composite of type I collagen sponges or porous poly(e-caprolactone) (PCL) scaffolds, platelet-rich plasma (PRP), BMP2-loaded nanoporous silicon enclosure (NSE) microparticles, mineralizing peptide amphiphiles (PA), and mesenchymal stem cells (MSC). Primary MSC from cortical bone (CB) tissue proved to form more and larger colony units, as well as produce more mineral matrix under osteogenic differentiation, than MSC from bone marrow (BM). Coating pre-treatments were optimized for maximum cell adhesion and mineralization, while a PRP-based gel carrier was created to efficiently deliver and retain MSC and microparticles within a porous scaffold while simultaneously promoting cell recruitment, proliferation, and angiogenesis. Components and composite sponges were evaluated for osteogenic differentiation in vitro. Osteogenic sponges were loaded with MSC, PRP, PA, and NSE and implanted subcutaneously in rats to evaluate the formation of bone tissue and angiogenesis in vivo. It was found that the combination of a collagen sponge with CB MSC, PRP, PA, and the BMP2-releasing NSE formed the most bone and was most vascularized by four weeks compared to analogous composites featuring BM MSC or PCL or lacking PRP, PA, and NSE. This study indicates that CB MSC should be considered as an alternative to marrow as a source of stem cells, while the PRP-PA cell and microparticle delivery system may be utilized for diverse tissue engineering applications.
Multi-composite bioactive osteogenic sponges featuring mesenchymal stem cells, platelet-rich plasma, nanoporous silicon enclosures, and Peptide amphiphiles for rapid bone regeneration.
具有间充质干细胞、富血小板血浆、纳米多孔硅外壳和肽两亲性的多复合生物活性成骨海绵,可快速促进骨骼再生
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作者:Murphy Matthew B, Blashki Daniel, Buchanan Rachel M, Fan Dongmei, De Rosa Enrica, Shah Ramille N, Stupp Samuel I, Weiner Bradley K, Simmons Paul J, Ferrari Mauro, Tasciotti Ennio
| 期刊: | Journal of Functional Biomaterials | 影响因子: | 5.200 |
| 时间: | 2011 | 起止号: | 2011 Jun 21; 2(2):39-66 |
| doi: | 10.3390/jfb2020039 | 研究方向: | 发育与干细胞、细胞生物学 |
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