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Promoting musculoskeletal system soft tissue regeneration by biomaterial-mediated modulation of macrophage polarization

机译:通过生物材料介导的巨噬细胞极化调节促进肌肉骨骼系统软组织再生

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摘要

Musculoskeletal disorders are common in clinical practice. Repairing critical-sized defects in musculoskeletal systems remains a challenge for researchers and surgeons, requiring the application of tissue engineering biomaterials. Successful application depends on the response of the host tissue to the biomaterial and specific healing process of each anatomical structure. The commonly-held view is that biomaterials should be biocompatible to minimize local host immune response. However, a growing number of studies have shown that active modulation of the immune cells, particularly macrophages, via biomaterials is an effective way to control immune response and promote tissue regeneration as well as biomaterial integration. Therefore, we critically review the role of macrophages in the repair of injured musculoskeletal system soft tissues, which have relatively poor regenerative capacities, as well as discuss further enhancement of target tissue regeneration via modulation of macrophage polarization by biomaterial-mediated immunomodulation (biomaterial properties and delivery systems). This active regulation approach rather than passive-evade strategy maximizes the potential of biomaterials to promote musculoskeletal system soft tissue regeneration and provides alternative therapeutic options for repairing critical-sized defects.
机译:肌肉骨骼疾病在临床实践中常见的。在肌肉骨骼系统修复的关键尺寸的缺陷仍然是研究人员和医生是一个挑战,需要组织工程生物材料的应用。成功应用依赖于宿主组织的每个解剖结构的生物材料和具体的愈合过程的响应。常用持有的观点是,生物材料应当是生物相容,以尽量减少当地的宿主免疫反应。然而,越来越多的研究表明,免疫细胞,尤其是巨噬细胞的活性调制,经由生物材料是控制免疫应答和促进组织再生,以及生物材料集成的有效途径。因此,我们严格审查的巨噬细胞在受伤的肌肉骨骼系统的软组织,其具有相对较差的再生能力的修复中的作用,以及通过由生物材料介导的免疫调节巨噬细胞极化的调制作为讨论靶组织再生的进一步增强(生物材料的属性和输送系统)。这种主动调节方法,而不是被动逃避策略最大化生物材料的潜力,以促进肌肉骨骼系统软组织再生,并且提供用于修复临界尺寸的缺陷的替代治疗选择。

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