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静电纺丝仿生纳米纤维支架:骨组织工程和再生医学的有前途的前景。

Electrospun Biomimetic Nanofibrous Scaffolds: A Promising Prospect for Bone Tissue Engineering and Regenerative Medicine.

机构信息

Department of Tissue Engineering, School of Intelligent Medicine, China Medical University, Shenyang 110122, China.

Department of Applied Chemistry, Zakir Husain College of Engineering & Technology, Aligarh Muslim University, Aligarh 202002, India.

出版信息

Int J Mol Sci. 2022 Aug 16;23(16):9206. doi: 10.3390/ijms23169206.

Abstract

Skeletal-related disorders such as arthritis, bone cancer, osteosarcoma, and osteoarthritis are among the most common reasons for mortality in humans at present. Nanostructured scaffolds have been discovered to be more efficient for bone regeneration than macro/micro-sized scaffolds because they sufficiently permit cell adhesion, proliferation, and chemical transformation. Nanofibrous scaffolds mimicking artificial extracellular matrices provide a natural environment for tissue regeneration owing to their large surface area, high porosity, and appreciable drug loading capacity. Here, we review recent progress and possible future prospective electrospun nanofibrous scaffolds for bone tissue engineering. Electrospun nanofibrous scaffolds have demonstrated promising potential in bone tissue regeneration using a variety of nanomaterials. This review focused on the crucial role of electrospun nanofibrous scaffolds in biological applications, including drug/growth factor delivery to bone tissue regeneration. Natural and synthetic polymeric nanofibrous scaffolds are extensively inspected to regenerate bone tissue. We focused mainly on the significant impact of nanofibrous composite scaffolds on cell adhesion and function, and different composites of organic/inorganic nanoparticles with nanofiber scaffolds. This analysis provides an overview of nanofibrous scaffold-based bone regeneration strategies; however, the same concepts can be applied to other organ and tissue regeneration tactics.

摘要

骨骼相关疾病,如关节炎、骨癌、骨肉瘤和骨关节炎,是目前人类死亡的最常见原因之一。与大/微尺寸的支架相比,纳米结构支架在骨再生方面更有效,因为它们能够充分允许细胞黏附、增殖和化学转化。纳米纤维支架模仿人工细胞外基质,由于其大的表面积、高的孔隙率和可观的药物负载能力,为组织再生提供了自然环境。在这里,我们综述了最近在用于骨组织工程的电纺纳米纤维支架方面的进展和可能的未来前景。电纺纳米纤维支架已经证明了在利用各种纳米材料进行骨组织再生方面具有很大的潜力。本综述重点介绍了电纺纳米纤维支架在生物应用中的关键作用,包括药物/生长因子传递到骨组织再生。广泛研究了天然和合成聚合物纳米纤维支架来再生骨组织。我们主要关注纳米纤维复合支架对细胞黏附和功能的重要影响,以及有机/无机纳米颗粒与纳米纤维支架的不同复合材料。本分析概述了基于纳米纤维支架的骨再生策略;然而,相同的概念可以应用于其他器官和组织再生策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6110/9408902/3927af542a71/ijms-23-09206-g001.jpg

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