Department of Orthopedics, First Affiliated Hospital of Bengbu Medical College , Bengbu, P.R. China.
School of Life Science, Bengbu Medical College , Bengbu, P. R. China.
Expert Opin Drug Deliv. 2020 Jul;17(7):993-1005. doi: 10.1080/17425247.2020.1767583. Epub 2020 May 19.
The treatment performances of current surgical therapeutic materials for injuries caused by high-energy trauma, such as prolonged bone defects, nerve-fiber disruptions, and repeated spasms or adhesions of vascular tendons after repair, are poor. Drug-loaded electrospun fibers have become a novel polymeric material for treating orthopedic diseases owing to their three-dimensional structures, thus providing excellent controlled drug-release responses and high affinity with local tissues. Herein, we reviewed the morphology of electrospun nanofibers, methods for loading drugs on the fibers, and modification methods to improve drug permeability and bioavailability. We highlight innovative applications of drug-loaded electrospun fibers in different treatments, including bone and cartilage defects, tendon and soft-tissue adhesion, vascular remodeling, skin grafting, and nervous-system injuries.
With the rapid development of electrospinning technologies and advancement of tissue engineering, drug-loaded electrospun fibers are becoming increasingly important in controlled drug release, wound closure, and tissue regeneration and repair.
Drug-loaded electrospun fibers exhibit a broad range of application prospects and great potential in treating orthopedic diseases. Accordingly, a plethora of novel treatments utilizing the different morphological features of electrospun fibers, the distinctive pharmacokinetics, pharmacodynamics characteristics of different drugs, and the diverse onset characteristics of different diseases, is proposed.
目前用于治疗高能创伤引起的损伤的外科治疗材料的治疗效果较差,例如骨缺损延长、神经纤维中断以及修复后血管肌腱的反复痉挛或粘连。载药电纺纤维因其具有三维结构,成为治疗骨科疾病的新型聚合物材料,从而提供了出色的控释药物响应能力和与局部组织的高亲和力。在此,我们综述了电纺纳米纤维的形态、纤维载药的方法以及改善药物渗透性和生物利用度的修饰方法。我们重点介绍了载药电纺纤维在不同治疗中的创新应用,包括骨和软骨缺损、肌腱和软组织粘连、血管重塑、皮肤移植和神经系统损伤。
随着静电纺丝技术的快速发展和组织工程学的进步,载药电纺纤维在控制药物释放、伤口闭合以及组织再生和修复方面的应用越来越重要。
载药电纺纤维在治疗骨科疾病方面具有广泛的应用前景和巨大的潜力。因此,提出了许多利用电纺纤维的不同形态特征、不同药物的独特药代动力学和药效学特征以及不同疾病的不同发病特征的新型治疗方法。