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Mesenchymal Stem Cells in Oriented PLGA/ACECM Composite Scaffolds Enhance Structure-Specific Regeneration of Hyaline Cartilage in a Rabbit Model

机译:在取向PLGA / ACECM复合支架中的间充质干细胞增强了兔模型中透明软骨的结构特异性再生

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摘要

Articular cartilage lacks a blood supply and nerves. Hence, articular cartilage regeneration remains a major challenge in orthopedics. Decellularized extracellular matrix- (ECM-) based strategies have recently received particular attention. The structure of native cartilage exhibits complex zonal heterogeneity. Specifically, the development of a tissue-engineered scaffold mimicking the aligned structure of native cartilage would be of great utility in terms of cartilage regeneration. Previously, we fabricated oriented PLGA/ACECM (natural, nanofibrous, articular cartilage ECM) composite scaffolds. In vitro, we found that the scaffolds not only guided seeded cells to proliferate in an aligned manner but also exhibited high biomechanical strength. To detect whether oriented cartilage regeneration was possible in vivo, we used mesenchymal stem cell (MSC)/scaffold constructs to repair cartilage defects. The results showed that cartilage defects could be completely regenerated. Histologically, these became filled with hyaline cartilage and subchondral bone. Moreover, the aligned structure of cartilage was regenerated and was similar to that of native tissue. In conclusion, the MSC/scaffold constructs enhanced the structure-specific regeneration of hyaline cartilage in a rabbit model and may be a promising treatment strategy for the repair of human cartilage defects.
机译:关节软骨缺乏血液供应和神经。因此,关节软骨再生仍然是整形外科的主要挑战。最近受到特别关注的基于脱细胞的细胞外基质 - (ECM-)的策略。本机软骨的结构表现出复杂的区内异质性。具体而言,在软骨再生方面,模仿原生软骨的对齐结构模仿的组织工程支架的发展将具有很大的效用。以前,我们制造了面向PLGA / ACECM(天然,纳米纤维,关节软骨ECM)复合支架。在体外,我们发现支架不仅引导种子细胞以对准的方式引导而且也表现出高生物力学强度。为了检测体内是否可以进行导向的软骨再生,我们使用间充质干细胞(MSC)/支架构建体来修复软骨缺陷。结果表明,软骨缺陷可以完全再生。组织学上,这些变得充满了透明软骨和副骨头。此外,软骨的对齐结构被再生并且与天然组织类似。总之,MSC /支架构建体增强了兔模型中透明软骨的结构特异性再生,并且可能是治疗人类软骨缺陷的有希望的治疗策略。

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