The engineering of vascular grafts is a growing field in regenerative medicine. Although numerous attempts have been made, the current vascular grafts made of polyurethane (PU), Dacron®, or Teflon® still display unsatisfying results. Electrospinning of biopolymers and native proteins has been in the focus of research to imitate the extracellular matrix (ECM) of vessels to produce a small caliber, off-the-shelf tissue engineered vascular graft (TEVG) as a substitute for poorly performing PU, Dacron, or Teflon prostheses. Blended poly-ε-caprolactone (PCL)/collagen grafts have shown promising results regarding biomechanical and cell supporting features. In order to find a suitable PCL/collagen blend, we fabricated plane electrospun PCL scaffolds using various collagen type I concentrations ranging from 5% to 75%. We analyzed biocompatibility and morphological aspects in vitro. Our results show beneficial features of collagen I integration regarding cell viability and functionality, but also adverse effects like the loss of a confluent monolayer at high concentrations of collagen. Furthermore, electrospun PCL scaffolds containing 25% collagen I seem to be ideal for engineering vascular grafts.
Vascular Tissue Engineering: Effects of Integrating Collagen into a PCL Based Nanofiber Material.
血管组织工程:将胶原蛋白整合到基于PCL的纳米纤维材料中的效果
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作者:Bertram Ulf, Steiner Dominik, Poppitz Benjamin, Dippold Dirk, Köhn Katrin, Beier Justus P, Detsch Rainer, Boccaccini Aldo R, Schubert Dirk W, Horch Raymund E, Arkudas Andreas
| 期刊: | Biomed Research International | 影响因子: | 2.300 |
| 时间: | 2017 | 起止号: | 2017;2017:9616939 |
| doi: | 10.1155/2017/9616939 | 研究方向: | 其它 |
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