首页> 外文期刊>Journal of biomedical materials research, Part A >Biomechanical and histologic evaluation of tissue engineered ligaments using chitosan and hyaluronan hybrid polymer fibers: a rabbit medial collateral ligament reconstruction model.
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Biomechanical and histologic evaluation of tissue engineered ligaments using chitosan and hyaluronan hybrid polymer fibers: a rabbit medial collateral ligament reconstruction model.

机译:使用壳聚糖和透明质酸杂化聚合物纤维对组织工程韧带进行生物力学和组织学评估:兔内侧副韧带重建模型。

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In this study, we used a rabbit medial collateral ligament reconstruction model to evaluate a novel chitosan-based hyaluronan hybrid polymer fiber scaffold for ligament tissue engineering and to examine whether mechanical forces exerted in an in vivo model increased extracellular matrix production by seeded fibroblasts. Scaffolds were used 2 weeks after incubation with fibroblasts obtained from the same rabbit in a cell-seeded scaffold (CSS) group and without cells in a noncell-seeded scaffold (NCSS) group. At 3, 6, and 12 weeks after surgery, the failure loads of the engineered ligaments in the CSS groups were significantly greater than those in the NCSS groups. At 6 weeks after surgery, the reconstructed tissue of the CSS group was positive for type I collagen, whereas that in the NCSS group was negative for type I collagen. At 12 weeks after surgery, the reconstructed tissue stained positive for type I collagen in the CSS group, but negative in the NCSS group. Our results indicate that the scaffold material enhanced the production of type I collagen and led to improved mechanical strength in the engineered ligament in vivo.
机译:在这项研究中,我们使用了兔子内侧副韧带重建模型来评估一种新型的基于壳聚糖的透明质酸杂合聚合物纤维支架,用于韧带组织工程,并检查在体内模型中施加的机械力是否通过播种成纤维细胞增加了细胞外基质的产生。在细胞接种支架(CSS)组中与从同一只兔子获得的成纤维细胞孵育后2周使用支架,在非细胞接种支架(NCSS)组中不使用细胞。术后3、6和12周,CSS组中工程韧带的破坏载荷明显大于NCSS组。术后6周,CSS组的重建组织I型胶原蛋白阳性,而NCSS组的重建组织I型胶原蛋白阴性。术后12周,在CSS组中,重建组织的I型胶原染色阳性,而在NCSS组中,染色组织阴性。我们的结果表明,支架材料增强了I型胶原蛋白的产生,并提高了体内工程韧带的机械强度。

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