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Advantages and challenges offered by biofunctional core-shell fiber systems for tissue engineering and drug delivery

机译:生物功能核壳纤维系统在组织工程和药物输送中的优势和挑战

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Whereas highly porous scaffolds composed of electrospun nanofibers can mimick major features of the extracellular matrix in tissue engineering, they lack the ability to incorporate and release biocompounds (drugs, growth factors) safely in a controlled way. Here, electrospun core-shell fibers (core made from water and aqueous solutions of hydrophilic polymers and the shell from materials with well-defined release mechanisms) offer unique advantages in comparison with those that have helped make porous nanofibrillar scaffolds highly successful in tissue engineering. This review considers the preparation and biofunctionalization of such core-shell fibers as well as applications in various areas, including neural, vascular, cardiac, cartilage and bone tissue engineering, and touches on the topic of clinical trials.
机译:尽管由电纺纳米纤维组成的高度多孔的支架可以模仿组织工程中细胞外基质的主要特征,但它们缺乏以受控方式安全地掺入和释放生物化合物(药物,生长因子)的能力。与那些使多孔纳米原纤维支架在组织工程学中取得巨大成功的电纺丝相比,电纺芯-壳纤维(由亲水性聚合物的水和水溶液制成的芯,以及具有明确释放机制的材料制成的壳)具有独特的优势。这篇综述考虑了这种核壳纤维的制备和生物功能化以及在各个领域的应用,包括神经,血管,心脏,软骨和骨组织工程,并涉及了临床试验的主题。

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