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Molecular Design of Synthetic Biodegradable Polymers as Cell Scaffold Materials

机译:合成可生物降解聚合物作为细胞支架材料的分子设计

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Poly(lactic acid) and its copolymers are regarded as the most useful biomaterials. The good biocompati-bility, biodegradability and mechanical properties of them make the synthetic biodegradable polymers have primary application to tissue engineering. The advantages and disadvantages of the synthetic biodegradable polymers as cell scaffold materials are evaluated. This article reviews the modification of polylactide-family aliphatic polymers to improve the cell affinity when the polymers are used as cell scaffolds. We have developed four main approaches: to modify polyester cell scaffolds in combination of plasma treating and collagen coating; to introduce hydrophilic segments into aliphatic polyester backbones; to introduce pendant functional groups into polyester chains j to modify polyester with dextran. The results of the cell cultures prove that the approaches mentioned above have improved the cell affinity of the polyesters and have modulated cell function such as adhesion, proliferation and migration.
机译:聚乳酸及其共聚物被认为是最有用的生物材料。它们的良好的生物相容性,生物降解性和机械性能使合成的生物可降解聚合物在组织工程中具有主要应用。评价了合成的可生物降解聚合物作为细胞支架材料的优缺点。本文综述了聚丙交酯族脂肪族聚合物的改性方法,以改善将其用作细胞支架时的细胞亲和力。我们已经开发出四种主要方法:结合血浆处理和胶原蛋白涂层来修饰聚酯细胞支架;将亲水链段引入脂族聚酯主链;将侧基官能团引入聚酯链中j用葡聚糖改性聚酯。细胞培养的结果证明,上述方法改善了聚酯的细胞亲和力,并具有调节的细胞功能,如粘附,增殖和迁移。

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