Tharakan Shebin, Hadjiargyrou Michael, Ilyas Azhar
Bio-Nanotechnology and Biomaterials (BNB) Laboratory, New York Institute of Technology, Old Westbury, NY 11568, USA.
College of Osteopathic Medicine, New York Institute of Technology, Old Westbury, NY 11568, USA.
Gels. 2024 Dec 24;11(1):2. doi: 10.3390/gels11010002.
Rotator cuff tears are a common injury that can be treated with or without surgical intervention. Gel-based scaffolds have gained significant attention in the field of tissue engineering, particularly for applications like rotator cuff repair. Scaffolds can be biological, synthetic, or a mixture of both materials. Collagen, a primary constituent of the extracellular matrix (ECM) in musculoskeletal tissues, is one of the most widely used materials for gel-based scaffolds in rotator cuff repair, but other ECM-based and synthetic-based composite scaffolds have also been utilized. These composite scaffolds can be engineered to mimic the biomechanical and biological properties of natural tissues, supporting the healing process and promoting regeneration. Various clinical studies examined the effectiveness of these composite scaffolds with collagen, ECM and synthetic polymers and provided outstanding results with remarkable improvements in range of motion (ROM), strength, and pain. This review explores the material composition, manufacturing process and material properties of gel-based composite scaffolds as well as their clinical outcomes for the treatment of rotator cuff injuries.
肩袖撕裂是一种常见损伤,可通过手术干预或非手术干预进行治疗。基于凝胶的支架在组织工程领域受到了广泛关注,特别是在肩袖修复等应用中。支架可以是生物的、合成的或两者材料的混合物。胶原蛋白是肌肉骨骼组织细胞外基质(ECM)的主要成分之一,是肩袖修复中基于凝胶的支架最广泛使用的材料之一,但其他基于ECM和合成的复合支架也已被使用。这些复合支架可以设计成模仿天然组织的生物力学和生物学特性,支持愈合过程并促进再生。各种临床研究检验了这些含有胶原蛋白、ECM和合成聚合物的复合支架的有效性,并在活动范围(ROM)、力量和疼痛方面取得了显著改善,效果出色。本综述探讨了基于凝胶的复合支架的材料组成、制造工艺和材料特性,以及它们治疗肩袖损伤的临床结果。