使用机械生物学工具修复肌腱。

Current tissue microenvironment reports Pub Date : 2020-06-01 Epub Date: 2021-03-31 DOI:10.1007/s43152-020-00005-w
Connor C Leek, Jaclyn M Soulas, Anna Lia Sullivan, Megan L Killian
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引用次数: 3

摘要

综述的目的:本综述的目的是描述肌腱修复的机械生物学机制,并概述当前和新兴的机械生物学工具,可能有助于改善肌腱愈合和再生。据报道,美国每年有超过3000万例肌肉骨骼损伤,其中近50%涉及肌腱和韧带的软组织损伤。然而,目前治疗肌腱损伤的治疗策略并不总是能成功地再生和恢复愈合肌腱的功能。最近的研究发现:使用康复策略来控制运动和机械负荷的传递来修复手术再附着后的肌腱是有益的,但不是全部,肌腱修复。旨在再现发育组织特性的支架显示出指导肌腱断裂后机械和生物愈合的潜力。结合生物材料来控制对齐和重新整合,以及促进无疤痕愈合,也很有希望。提高我们对常驻细胞损伤阈值的理解,以及这些细胞如何对生物电信号做出反应,可能会为肌腱再生领域提供有希望的进展。摘要:随着肌肉骨骼损伤尤其是肌腱再生入路的发展,骨科领域不断进步和完善,在这一领域的深入探索将会改善临床效果。
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Using tools in mechanobiology to repair tendons.

Purpose of review: The purpose of this review is to describe the mechanobiological mechanisms of tendon repair as well as outline current and emerging tools in mechanobiology that might be useful for improving tendon healing and regeneration. Over 30 million musculoskeletal injuries are reported in the US per year and nearly 50% involve soft tissue injuries to tendons and ligaments. Yet current therapeutic strategies for treating tendon injuries are not always successful in regenerating and returning function of the healing tendon.

Recent findings: The use of rehabilitative strategies to control the motion and transmission of mechanical loads to repairing tendons following surgical reattachment is beneficial for some, but not all, tendon repairs. Scaffolds that are designed to recapitulate properties of developing tissues show potential to guide the mechanical and biological healing of tendon following rupture. The incorporation of biomaterials to control alignment and reintegration, as well as promote scar-less healing, are also promising. Improving our understanding of damage thresholds for resident cells and how these cells respond to bioelectrical cues may offer promising steps forward in the field of tendon regeneration.

Summary: The field of orthopaedics continues to advance and improve with the development of regenerative approaches for musculoskeletal injuries, especially for tendon, and deeper exploration in this area will lead to improved clinical outcomes.

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