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Integrating Soft and Hard Tissues Via Interface Tissue Engineering

机译:通过界面组织工程整合软组织和硬组织

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摘要

The enthesis, or interface between bone and soft tissues such as ligament and tendon, is prone to injury and often does not heal, even post-surgical intervention. Interface tissue engineering represents an integrative strategy for regenerating the native enthesis by functionally connecting soft and hard tissues and thereby improving clinical outcome. This review focuses on integrative and cell-instructive scaffold designs that target the healing of the two most commonly injured soft tissue-bone junctions: tendon-bone interface (e.g., rotator cuff) and ligament-bone interface (e.g., anterior cruciate ligament). The inherent connectivity between soft and hard tissues is instrumental for musculoskeletal motion and is therefore a key design criterion for soft tissue regeneration. To this end, scaffold design for soft tissue regeneration have progressed from single tissue systems to the emerging focus on pre-integrated and functional composite tissue units. Specifically, a multifaceted, bioinspired approach has been pursued wherein scaffolds are tailored to stimulate relevant cell responses using spatially patterned structural and chemical cues, growth factors, and/or mechanical stimulation. Moreover, current efforts to elucidate the essential scaffold design criteria via strategic biomimicry are emphasized as these will reduce complexity in composite tissue regeneration and ease the related burden for clinical translation. These innovative studies underscore the clinical relevance of engineering connective tissue integration and have broader impact in the formation of complex tissues and total joint regeneration.
机译:骨骼或骨骼与软组织(如韧带和肌腱)之间的接合处容易受伤,甚至在手术后也无法愈合。界面组织工程学代表了通过功能性连接软组织和硬组织来再生天然生物的整合策略,从而改善了临床结果。这篇综述着重于针对两种最常见的受伤软组织-骨连接的愈合的整合和细胞指导性支架设计:腱-骨界面(例如,肩袖)和韧带-骨界面(例如,前十字韧带)。软组织和硬组织之间的固有连接性有助于骨骼肌肉运动,因此是软组织再生的关键设计标准。为此,用于软组织再生的支架设计已经从单一组织系统发展到了对预整合和功能性复合组织单位的关注。具体地,已经寻求了一种多方面的,受生物启发的方法,其中使用空间图案化的结构和化学提示,生长因子和/或机械刺激来定制支架以刺激相关的细胞反应。此外,强调了通过策略性仿生学阐明基本支架设计标准的当前努力,因为这些将降低复合组织再生的复杂性并减轻临床翻译的相关负担。这些创新研究强调了工程性结缔组织整合的临床意义,并在复杂组织的形成和全关节再生中产生了更广泛的影响。

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