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Hydrophilization of synthetic biodegradable polymer scaffolds for improved cell/tissue compatibility

机译:合成生物可降解聚合物支架的亲水化作用,可改善细胞/组织的相容性

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Porous scaffolds have been widely used in tissue engineering because they can guide cells and tissues to grow, synthesize extracellular matrix and other biological molecules, and facilitate the formation of functional tissues and organs. Although various natural and synthetic biodegradable polymers have been used to fabricate the scaffolds, synthetic polymers have been more widely used for scaffolds since they have good mechanical strength, reproducible/ controllable mechanical-chemical properties, and controllable biodegradation rates. However, the 'hydrophobic character' of common synthetic polymers is considered a limitation for tissue engineering applications because it can lead to a low initial cell seeding density, heterogeneous cell distribution in the scaffold, and slow cell growth due to insufficient absorption/diffusion of cell culture medium into scaffold and lack of specific interaction sites with cells. The hydrophilization of porous synthetic polymer scaffolds has been considered as one of the simple but effective approaches to achieve desirable in vitro cell culture and in vivo tissue regeneration within the scaffolds. In this review paper, representative synthetic biodegradable polymers and techniques to fabricate porous scaffolds are briefly summarized and their hydrophilization techniques to improve cell/tissue compatibility are discussed.
机译:多孔支架已被广泛用于组织工程中,因为它们可以引导细胞和组织生长,合成细胞外基质和其他生物分子,并促进功能性组织和器官的形成。尽管已经使用各种天然和合成的可生物降解的聚合物来制造支架,但是由于合成聚合物具有良好的机械强度,可再现/可控制的机械化学性质和可控制的生物降解速率,因此它们已被更广泛地用于支架。然而,普通合成聚合物的“疏水特性”被认为是组织工程应用的局限性,因为它可能导致低的初始细胞接种密度,支架中的异质细胞分布以及由于细胞吸收/扩散不足而导致的细胞生长缓慢培养基中放入支架并缺乏与细胞的特异性相互作用位点。多孔合成聚合物支架的亲水化已被认为是在支架内实现理想的体外细胞培养和体内组织再生的简单但有效的方法之一。在这篇综述文件中,简要总结了代表性的合成生物可降解聚合物和制造多孔支架的技术,并讨论了其亲水化技术以改善细胞/组织的相容性。

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