肌腱修复与再生的生物材料与支架设计进展。

IF 3.1 4区 医学 Q2 BIOPHYSICS
Ahmad Alhaskawi, Yanzhao Dong, Xiaodi Zou, Weijie Zhou, Sohaib Hasan Abdullah Ezzi, Vishnu Goutham Kota, Mohamed Hasan Abdulla Hasan Abdulla, Sahar Abdalbary, Hui Lu
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引用次数: 0

摘要

肌腱损伤由于其有限的自然愈合能力和对这些组织的机械要求而提出了重大的临床挑战。本文综述了当前肌腱修复和再生的策略和进展,重点是生物材料创新和支架设计。通过对PubMed、Scopus、Web of Science等数据库的系统文献检索,分析重点研究,评估水凝胶、合成聚合物、纤维增强支架等生物相容性材料促进肌腱愈合的功效。重点放在胶原纤维结构的作用,包括纤维直径、排列和卷曲,在恢复肌腱的机械强度和功能特性。此外,本文还重点介绍了一些新兴技术,如静电纺丝、熔融电书写和混合纺织方法,这些技术可以精确地设计出模仿天然肌腱结构的支架。再生医学的前沿方法,包括干细胞疗法、生物电子设备和生物活性分子,也在探索它们增强肌腱修复的潜力。研究结果强调了这些技术在改善肌腱生物力学和功能恢复方面的变革性影响。展望了未来的研究方向,旨在克服目前在支架力学性能和肌腱-骨和肌腱-肌肉连接点集成方面的局限性。本文综述有助于开发更有效的肌腱再生策略,促进临床结果和骨科组织工程领域的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advancements in biomaterials and scaffold design for tendon repair and regeneration.

Tendon injuries present a significant clinical challenge due to their limited natural healing capacity and the mechanical demands placed on these tissues. This review provides a comprehensive evaluation of the current strategies and advancements in tendon repair and regeneration, focusing on biomaterial innovations and scaffold design. Through a systematic literature search of databases such as PubMed, Scopus, and Web of Science, key studies were analyzed to assess the efficacy of biocompatible materials like hydrogels, synthetic polymers, and fiber-reinforced scaffolds in promoting tendon healing. Emphasis is placed on the role of collagen fiber architecture, including fiber diameter, alignment, and crimping, in restoring the mechanical strength and functional properties of tendons. Additionally, the review highlights emerging techniques such as electrospinning, melt electrowriting, and hybrid textile methods that allow for precise scaffold designs mimicking native tendon structures. Cutting-edge approaches in regenerative medicine, including stem cell therapies, bioelectronic devices, and bioactive molecules, are also explored for their potential to enhance tendon repair. The findings underscore the transformative impact of these technologies on improving tendon biomechanics and functional recovery. Future research directions are outlined, aiming to overcome the current limitations in scaffold mechanical properties and integration at tendon-bone and tendon-muscle junctions. This review contributes to the development of more effective strategies for tendon regeneration, advancing both clinical outcomes and the field of orthopedic tissue engineering.

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来源期刊
Journal of Applied Biomaterials & Functional Materials
Journal of Applied Biomaterials & Functional Materials BIOPHYSICS-ENGINEERING, BIOMEDICAL
CiteScore
4.40
自引率
4.00%
发文量
36
审稿时长
>12 weeks
期刊介绍: The Journal of Applied Biomaterials & Functional Materials (JABFM) is an open access, peer-reviewed, international journal considering the publication of original contributions, reviews and editorials dealing with clinical and laboratory investigations in the fast growing field of biomaterial sciences and functional materials. The areas covered by the journal will include: • Biomaterials / Materials for biomedical applications • Functional materials • Hybrid and composite materials • Soft materials • Hydrogels • Nanomaterials • Gene delivery • Nonodevices • Metamaterials • Active coatings • Surface functionalization • Tissue engineering • Cell delivery/cell encapsulation systems • 3D printing materials • Material characterization • Biomechanics
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