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Development of a silk cable-reinforced gelatin/silk fibroin hybrid scaffold for ligament tissue engineering.

机译:韧带韧带组织工程丝网增强明胶/丝纤维素杂交支架的开发。

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摘要

The objective of this study was to develop a silk cable-reinforced gelatin/silk fibroin hybrid scaffold for ligament tissue engineering. The scaffold was fabricated by lyophilizing the cross-linked gelatin and silk fibroin mixture with braided silk cables. Scanning electronic microscopy (SEM) observation showed that microporous gelatin/silk fibroin sponges formed around silk cables mimicked the microstructures of ligament extracellular matrix (ECM). The silk cables significantly increased the tensile strength of the scaffold to meet the mechanical requirements for ligament tissue engineering. The scaffold possessed good cell adhesion property, and when mesenchymal stem cells (MSCs) were seeded on it, cells proliferated profusely. After 2 weeks of culture, seeded MSCs were distributed uniformly throughout the scaffold and were highly viable. Occurrence of cell death during culture was not significant. Deposition of collagen on the scaffold was found to increase with time. Differentiation of MSCs into ligament fibroblasts was verified by expressions of ligament ECM specific genes including collagen type I, collagen type III, and tenascin-C in mRNA and protein level. Immunohistochemistry stains also confirmed the production of key ligament ECM components on the scaffold. The results demonstrate that silk cable-reinforced gelatin/silk fibroin scaffold possesses the appropriate mechanical properties and has enlarged surface area. It is also capable of supporting cell proliferation and differentiation for ligament tissue engineering.
机译:本研究的目的是开发一种用于韧带组织工程的丝网增强明胶/丝纤维素杂交支架。通过将交联明胶和丝素蛋白混合物冻干与编织丝电缆来制造支架。扫描电子显微镜(SEM)观察显示,丝网周围形成的微孔明胶/丝素蛋白海绵模仿韧带细胞杆状基质(ECM)的微观结构。丝电缆显着提高了支架的拉伸强度,以满足韧带组织工程的机械要求。支架具有良好的细胞粘附性能,并且当播种内置干细胞(MSCs)时,细胞增殖繁多。经过2周的培养后,种子MSCs在整个支架上均匀分布,并高度可行。培养过程中细胞死亡的发生并不重要。发现胶原蛋白对支架上的沉积随时间而增加。通过表达韧带ECM特异性基因,包括胶原蛋白I型,III型和蛋白质水平的胶原蛋白-C,通过表达韧带成纤维细胞对韧带成纤维细胞的分化。免疫组织化学污渍还证实了在支架上产生关键韧带ECM组分。结果表明,丝网增强明胶/丝素蛋白支架具有适当的机械性能并具有扩大的表面积。它还能够支持韧带组织工程的细胞增殖和分化。

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