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首页> 外文期刊>Acta biomaterialia >Micrometer scale guidance of mesenchymal stem cells to form structurally oriented large-scale tissue engineered cartilage
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Micrometer scale guidance of mesenchymal stem cells to form structurally oriented large-scale tissue engineered cartilage

机译:间充质干细胞的千分尺刻度引导,形成结构面向的大规模组织工程化软骨

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Graphical abstract Display Omitted Abstract Current clinical methods to treat articular cartilage lesions provide temporary relief of the symptoms but fail to permanently restore the damaged tissue. Tissue engineering, using mesenchymal stem cells (MSCs) combined with scaffolds and bioactive factors, is viewed as a promising method for repairing cartilage injuries. However, current tissue engineered constructs display inferior mechanical properties compared to native articular cartilage, which could be attributed to the lack of structural organization of the extracellular matrix (ECM) of these engineered constructs in comparison to the highly oriented structure of articular cartilage ECM. We previously showed that we can guide MSCs undergoing chondrogenesis to align using microscale guidance channels on the surface of a two-dimensional (2-D) collagen scaffold, which resulted in the deposition of aligned ECM within the channels and enhanced mechanical properties of the constructs. In this study, we developed a technique to roll 2-D collagen scaffolds containing MSCs within guidance channels in order to produce a large-scale, three-dimensional (3-D) tissue engineered cartilage constructs with enhanced mechanical properties compared to current constructs. After rolling the MSC-scaffold constructs into a 3-D cylindrical structure, the constructs were cultured for 21 days under chondrogenic culture conditions. The microstructure architecture and mechanical properties of the constructs were evaluated using imaging and compressive testing. Histology and immunohistochemistry of the constructs showed extensive glycosaminoglycan (GAG) and collagen type II deposition. Second harmonic generation imaging and Picrosirius red staining indicated alignment of neo-collagen fibers within the guidance channels of the constructs. Mechanical testing indicated that constructs containing the guidance channels displayed enhanced compressive properties compared to control constructs without these channels. In conclusion, using a novel roll-up method, we have developed large scale MSC based tissue-engineered cartilage that shows microscale structural organization and enhanced compressive properties compared to current tissue engineered constructs. Statement of significance Tissue engineered cartilage constructs made with human mesenchymal stem cells (hMSCs), scaffolds and bioactive factors are a promising solution to treat cartilage defects. A major disadvantage of these constructs is their inferior mechanical properties compared to the native tissue, which is likely due to the lack of structural organization of the extracellular matrix of the engineered constructs. In this study, we developed three-dimensional (3-D) cartilage constructs from rectangular scaffold sheets containing hMSCs in micro-guidance channels and characterized their mechanical properties and metabolic requirements. The work led to a novel roll-up method to embed 2-D microscale structures in 3-D constructs. Further, micro-guidance channels incorporated within the 3-D cartilage constructs led to the production of aligned cell-produced matrix and enhanced mechanical function. ]]>
机译:图形摘要显示屏省略了摘要目前治疗关节软骨病变的临床方法提供暂时缓解症状,但未能永久地恢复受损的组织。使用间充质干细胞(MSCs)与支架和生物活性因子联合组织工程,被认为是修复软骨损伤的有希望的方法。然而,与天然关节软骨相比,当前组织工程化构建体显示较差的机械性能,其可归因于与这些工程化构建体的细胞外基质(ECM)的结构组织缺乏,与关节软骨ECM的高度取向结构相比。我们以前表明我们可以指导经历后部化合物发生的MSCs以在二维(2-D)胶原支架的表面上使用微观指导通道对准,这导致在通道内沉积对齐的ECM并增强构建体的机械性能。 。在这项研究中,我们开发了一种在引导通道内携带含有MSCs的2-D胶原蛋白支架的技术,以产生大规模的三维(3-D)组织工程化软骨构建体,与电流构造相比具有增强的机械性能。将MSC支架构建体滚到3d圆柱形结构后,在有软骨形成培养条件下将构建体培养21天。使用成像和压缩测试评估构建体的微观结构结构和机械性能。构建体的组织学和免疫组织化学显示出广泛的糖胺聚糖(GAG)和胶原II型沉积。二次谐波生成成像和PICROSIRIUS红染色在构建体的引导通道内的新胶原纤维的指向。与控制构建体相比,机械测试表明,与没有这些通道的控制构造相比,包含引导通道的构造显示了增强的压缩性能。总之,使用一种新型卷起方法,我们开发了基于大规模的MSC组织工程化软骨,其显示与当前组织工程构建体相比的微观结构组织和增强的压缩性能。用人间充质干细胞(HMSCs),支架和生物活性因子制成的显着组织工程化软骨构建体是治疗软骨缺陷的有希望的溶液。与天然组织相比,这些构建体的主要缺点是它们的较差的机械性能,这可能是由于工程构建体的细胞外基质的结构组织缺乏。在这项研究中,我们开发了一种从含有HMSCs的微型引导通道中的矩形支架板的三维(3-D)软骨构建体,并表征其机械性能和代谢要求。该工作导致了一种新的卷起方法,可以在3-D构建体中嵌入2-D微观结构。此外,结合在3-D软骨构建体内的微型引导通道导致了对准的电池产生的基质和增强的机械函数。 ]]>

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