Department of Burns & Wound Care Center, The Second Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, 310009, China.
Curr Stem Cell Res Ther. 2021;16(4):414-442. doi: 10.2174/1574888X15666201014145703.
Diseases, trauma, and injuries are highly prevalent conditions that lead to many critical tissue defects. Tissue engineering has great potentials to develop functional scaffolds that mimic natural tissue structures to improve or replace biological functions. In many kinds of technologies, electrospinning has received widespread attention for its outstanding functions, which is capable of producing nanofibre structures similar to the natural extracellular matrix. Amongst the available biopolymers for electrospinning, poly (caprolactone) (PCL) has shown favorable outcomes for tissue regeneration applications. According to the characteristics of different tissues, PCL can be modified by altering the functional groups or combining with other materials, such as synthetic polymers, natural polymers, and metal materials, to improve its physicochemical, mechanical, and biological properties, making the electrospun scaffolds meet the requirements of different tissue engineering and regenerative medicine. Moreover, efforts have been made to modify nanofibres with several bioactive substances to provide cells with the necessary chemical cues and a more in vivo like environment. In this review, some recent developments in both the design and utility of electrospun PCL-based scaffolds in the fields of bone, cartilage, skin, tendon, ligament, and nerve are highlighted, along with their potential impact on future research and clinical applications.
疾病、创伤和损伤是导致许多严重组织缺陷的高发情况。组织工程具有巨大的潜力,可以开发出模仿天然组织结构的功能性支架,以改善或替代生物功能。在许多技术中,静电纺丝因其出色的功能而受到广泛关注,它能够产生类似于天然细胞外基质的纳米纤维结构。在可用于静电纺丝的生物聚合物中,聚己内酯(PCL)已显示出在组织再生应用方面的良好效果。根据不同组织的特点,可通过改变官能团或与其他材料(如合成聚合物、天然聚合物和金属材料)结合来对 PCL 进行改性,以改善其物理化学、机械和生物学性能,使静电纺丝支架满足不同组织工程和再生医学的要求。此外,还努力用几种生物活性物质对纳米纤维进行改性,为细胞提供必要的化学线索和更类似于体内的环境。本文重点介绍了静电纺丝 PCL 基支架在骨、软骨、皮肤、肌腱、韧带和神经等领域的设计和应用的一些最新进展,以及它们对未来研究和临床应用的潜在影响。