Robles Karla N, Zahra Fatima Tuz, Mu Richard, Giorgio Todd
TIGER Institute, Tennessee State University, Nashville, TN 37209, USA.
Department of Biomedical Engineering, Vanderbilt University, Nashville, TN 37235, USA.
Polymers (Basel). 2024 Oct 10;16(20):2853. doi: 10.3390/polym16202853.
Tissue engineering has great potential for the restoration of damaged tissue due to injury or disease. During tissue development, scaffolds provide structural support for cell growth. To grow healthy tissue, the principal components of such scaffolds must be biocompatible and nontoxic. Poly(ε-caprolactone) (PCL) is a biopolymer that has been used as a key component of composite scaffolds for tissue engineering applications due to its mechanical strength and biodegradability. However, PCL alone can have low cell adherence and wettability. Blends of biomaterials can be incorporated to achieve synergistic scaffold properties for tissue engineering. Electrospun PCL-based scaffolds consist of single or blended-composition nanofibers and nanofibers with multi-layered internal architectures (i.e., core-shell nanofibers or multi-layered nanofibers). Nanofiber diameter, composition, and mechanical properties, biocompatibility, and drug-loading capacity are among the tunable properties of electrospun PCL-based scaffolds. Scaffold properties including wettability, mechanical strength, and biocompatibility have been further enhanced with scaffold layering, surface modification, and coating techniques. In this article, we review nanofibrous electrospun PCL-based scaffold fabrication and the applications of PCL-based scaffolds in tissue engineering as reported in the recent literature.
组织工程在修复因损伤或疾病而受损的组织方面具有巨大潜力。在组织发育过程中,支架为细胞生长提供结构支撑。为了生长健康的组织,此类支架的主要成分必须具有生物相容性且无毒。聚(ε-己内酯)(PCL)是一种生物聚合物,由于其机械强度和生物可降解性,已被用作组织工程应用复合支架的关键成分。然而,单独的PCL可能具有低细胞粘附性和润湿性。可以加入生物材料的混合物以实现用于组织工程的协同支架特性。基于静电纺丝PCL的支架由单一或混合成分的纳米纤维以及具有多层内部结构的纳米纤维(即核壳纳米纤维或多层纳米纤维)组成。纳米纤维直径、组成、机械性能、生物相容性和药物负载能力是基于静电纺丝PCL的支架的可调节特性。通过支架分层、表面改性和涂层技术,包括润湿性、机械强度和生物相容性在内的支架特性得到了进一步增强。在本文中,我们综述了基于静电纺丝PCL的纳米纤维支架的制备以及近期文献报道的基于PCL的支架在组织工程中的应用。