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首页> 外文期刊>Journal of orthopaedic science : >Alginate and chitosan polyion complex hybrid fibers for scaffolds in ligament and tendon tissue engineering.
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Alginate and chitosan polyion complex hybrid fibers for scaffolds in ligament and tendon tissue engineering.

机译:海藻酸盐和壳聚糖聚离子复合杂化纤维,用于韧带和肌腱组织工程的支架。

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Selecting the material for a scaffold is critically important for the success of tissue engineering. To simplify complicated biosynthetic matrices and achieve a novel class of potential materials, a model of polyion complex fibers was prepared from alginate and chitosan. In the current in vitro study, we thought that alginate-based chitosan hybrid biomaterials could provide excellent supports for fibroblast adhesion. In the current study, alginate polymer fiber (alginate group) and alginate-based chitosan hybrid polymer fibers (alginate with 0.05% chitosan, alginate-chitosan 0.05% group; alginate with 0.1% chitosan, alginate-chitosan 0.1% group) were originally prepared. We investigated the adhesion behavior of rabbit tendon fibroblast onto alginate polymer fibers versus the adhesion of the fibroblast onto alginate-based chitosan hybrid polymer fibers. Furthermore, mechanical properties and synthesis of the extracellular matrix were investigated. Mechanically, the novel fiber has considerable tensile strength of more than 200 MPa. We demonstrated that the alginate-based chitosan hybrid polymer fibers showed much improved adhesion capacity with fibroblast compared with alginate polymer fiber. Additionally, morphologic studies revealed the dense fiber of the type I collagen produced by the fibroblast in the hybrid polymer fibers. We concluded that an alginate-based chitosan hybrid polymer fiber has considerable potential as a desirable biomaterial scaffold for tendon and ligament tissue engineering.
机译:选择支架材料对于组织工程的成功至关重要。为了简化复杂的生物合成基质并获得一类新型的潜在材料,从藻酸盐和壳聚糖制备了聚离子复合纤维模型。在当前的体外研究中,我们认为基于藻酸盐的壳聚糖杂化生物材料可以为成纤维细胞粘附提供出色的支持。在当前的研究中,最初准备了藻酸盐聚合物纤维(藻酸盐组)和藻酸盐基壳聚糖杂化聚合物纤维(藻酸盐具有0.05%壳聚糖,藻酸盐-壳聚糖0.05%组;藻酸盐具有0.1%壳聚糖,藻酸盐-壳聚糖0.1%组)。 。我们研究了兔肌腱成纤维细胞在藻酸盐聚合物纤维上的粘附行为与成纤维细胞在藻酸盐基壳聚糖杂化聚合物纤维上的粘附行为。此外,研究了机械性能和细胞外基质的合成。在机械上,新型纤维具有超过200 MPa的可观抗拉强度。我们证明,与藻酸盐聚合物纤维相比,基于藻酸盐的壳聚糖杂化聚合物纤维对成纤维细胞的粘附能力大大提高。另外,形态学研究揭示了由杂化聚合物纤维中的成纤维细胞产生的I型胶原的致密纤维。我们得出的结论是,基于藻酸盐的壳聚糖杂化聚合物纤维作为肌腱和韧带组织工程的理想生物材料支架具有巨大的潜力。

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