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Bio-instructive materials for musculoskeletal regeneration

机译:生物 - 肌肉骨骼再生材料

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摘要

The prevalence and cost of disorders affecting the musculoskeletal system are predicted to rise significantly in the coming years due to the aging global population and the increase of associated risk factors. Despite being the second largest cause of disability, the clinical options for therapeutic intervention remain limited. The clinical translation of cell-based therapies for the treatment of musculoskeletal disorders faces many challenges including maintenance of cell survival in the harsh in vivo environment and the lack of control over regulating cell phenotype upon implantation. In order to address these challenges, the development of bio-instructive materials to modulate cell behavior has taken center stage as a strategy to increase the therapeutic potential of various cell populations. However, the determination of the necessary cues for a specific application and how these signals should be presented from a biomaterial remains elusive. This review highlights recent biochemical and physical strategies used to engineer bio-instructive materials for the repair of musculoskeletal tissues. There is a particular emphasis on emerging efforts such as the engineering of immunomodulatory and antibacterial materials, as well as the incorporation of these strategies into biofabrication and organ-on-a-chip approaches.
机译:由于老化的全球人口和相关危险因素的增加,将在未来几年内显着增加影响肌肉骨骼系统的患病率和成本。尽管是第二大残疾原因,但治疗干预的临床选择仍然有限。用于治疗肌肉骨骼疾病的细胞基疗法的临床翻译面临着许多挑战,包括在体内环境中苛刻的细胞存活以及在植入时缺乏对调节细胞表型的控制。为了解决这些挑战,在调节细胞行为的生物指导材料的发展已经采取中心阶段作为提高各种细胞群体治疗潜力的策略。然而,确定特定应用的必要提示以及这些信号应该如何从生物材料中呈现仍然难以捉摸。本综述亮点近期生化和物理策略用于工程师的生物指导材料,用于修复肌肉骨骼组织。特别强调新兴的努力,例如免疫调节和抗菌材料的工程,以及将这些策略纳入生物制作和片内方法。

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