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Review: photopolymerizable and degradable biomaterials for tissue engineering applications.

机译:综述:用于组织工程应用的可光聚合和降解生物材料。

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Photopolymerizable and degradable biomaterials are finding widespread application in the field of tissue engineering for the engineering of tissues such as bone, cartilage, and liver. The spatial and temporal control afforded by photoinitiated polymerizations has allowed for the development of injectable materials that can deliver cells and growth factors, as well as for the fabrication of scaffolding with complex structures. The materials developed for these applications range from entirely synthetic polymers (e.g., poly(ethylene glycol)) to purely natural polymers (e.g., hyaluronic acid) that are modified with photoreactive groups, with degradation based on the hydrolytic or enzymatic degradation of bonds in the polymer backbone or crosslinks. The degradation behavior also ranges from purely bulk to entirely surface degrading, based on the nature of the backbone chemistry and type of degradable units. The mechanical properties of these polymers are primarily based on factors such as the network crosslinking density and polymer concentration. As we better understand biological features necessary to control cellular behavior, smarter materials are being developed that can incorporate and mimic many of these factors.
机译:可光聚合和可降解的生物材料在组织工程领域中被广泛应用,用于组织例如骨,软骨和肝脏的工程。由光引发的聚合反应提供的空间和时间控制允许开发可传递细胞和生长因子的可注射材料,以及制造具有复杂结构的支架。为这些应用开发的材料范围从完全合成的聚合物(例如,聚乙二醇)到经光反应性基团修饰的纯天然聚合物(例如,透明质酸),其降解基于水解或酶促降解。聚合物主链或交联。根据骨架化学性质和可降解单元的类型,降解行为的范围也从纯粹的整体降解到整个表面的降解。这些聚合物的机械性能主要基于诸如网络交联密度和聚合物浓度的因素。随着我们更好地了解控制细胞行为所必需的生物学特征,正在开发可以纳入并模仿许多这些因素的更智能的材料。

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