首页> 外文期刊>Tissue engineering, Part A >Preparation of Scaffold-Free Tissue-Engineered Constructs Derived from Human Synovial Mesenchymal Stem Cells Under Low Oxygen Tension Enhances Their Chondrogenic Differentiation Capacity
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Preparation of Scaffold-Free Tissue-Engineered Constructs Derived from Human Synovial Mesenchymal Stem Cells Under Low Oxygen Tension Enhances Their Chondrogenic Differentiation Capacity

机译:在低氧张力下衍生自人滑道间充质干细胞的支架无组织工程构建体的制备增强了它们的软骨形成分化能力

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摘要

Low oxygen tension (LOT) has been reported to promote chondrogenic differentiation and prevent cellular senescence of stem cells. Therefore, the introduction of LOT conditions into conventional tissue engineering processes could further improve the potential of the constructs generated for cartilage repair. The purpose of this study was to elucidate the feasibility of LOT preparation on the chondrogenic differentiation of a scaffold-free tissue-engineered construct (TEC) derived from synovial mesenchymal stem cells (MSCs), construct whose feasibility for cartilage repair has been demonstrated in previous preclinical and clinical studies. Culture of MSCs under LOT conditions prevented cellular senescence and promoted the proliferative capacity of human synovial MSCs. In addition, TEC prepared from human synovial MSCs under LOT conditions (5% O-2; LOT-TEC) showed superior in vitro chondrogenic differentiation capacity compared to that prepared under the usual 20% O-2 (normal oxygen tension [NOT]; NOT-TEC), with elevated glycosaminoglycan production and elevated levels of chondrogenic marker gene expression. Notably, LOT-TEC differentiated into a hyaline-like cartilaginous tissue of approximately 1 cm in diameter without the detectable presence of fibrous tissue, while conventional NOT-TEC differentiated into a mixture of hyaline-like and fibrocartilaginous tissues. This is the first demonstration of in vitro development of a hyaline-like cartilaginous tissue of an implantable size to chondral lesion that was derived from human MSCs without the use of an exogenous scaffold. The manipulation of oxygen tension is a safe procedure with low cost and, thus, may be a clinically relevant option to improve the quality of TEC-mediated cartilage repair.
机译:据报道,低氧张力(批次)促进软骨形成分化并预防干细胞的细胞衰老。因此,将批变条件引入常规组织工程过程可以进一步提高软骨修复产生的构建体的潜力。本研究的目的是阐明批量制剂对衍生自滑膜间充质干细胞(MSC)的无支腿组织工程构建体(TEC)的软骨分化的可行性,其构建体在先前已经证明了软骨修复的可行性临床前与临床研究。批量病情下MSCs的培养物预防细胞衰老并促进人类滑膜MSCs的增殖能力。此外,与在常规20%O-2下制备的批量状况(5%O-2; Lot-TEC)下,从人类滑膜MSCs制备的TEC显示出优异的体外软化物分化能力(正常氧气张力[不]; NOT-TEC),具有升高的糖胺聚糖产生和升高的软骨内标志物基因表达水平。值得注意的是,批次的TEC分化成直径约1cm的透明状软骨组织,而不可检测到纤维组织的可检测存在,而常规NOT-TEC分化成透明样和纤维纤维状组织的混合物。这是第一次证明植入大小的透明状软骨组织的体外发展,以衍生自人MSCs而不使用外源支架。氧气张力的操纵是具有低成本的安全程序,因此可能是提高TEC介导的软骨修复的质量的临床相关的选择。

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  • 来源
    《Tissue engineering, Part A》 |2016年第6期|共11页
  • 作者单位

    Osaka Univ Dept Orthopaed Surg Grad Sch Med Suita Osaka Japan;

    Osaka Univ Dept Orthopaed Surg Grad Sch Med Suita Osaka Japan;

    Univ Calgary McCaig Inst Bone &

    Joint Hlth Calgary AB Canada;

    Osaka Univ Dept Orthopaed Surg Grad Sch Med Suita Osaka Japan;

    Osaka Univ Dept Orthopaed Surg Grad Sch Med Suita Osaka Japan;

    Osaka Univ Dept Orthopaed Surg Grad Sch Med Suita Osaka Japan;

    Osaka Univ Hosp Med Ctr Translat &

    Clin Res Dept Med Innovat Suita Osaka Japan;

    Osaka Univ Dept Orthopaed Surg Grad Sch Med Suita Osaka Japan;

    Osaka Univ Dept Orthopaed Surg Grad Sch Med Suita Osaka Japan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 人体形态学;
  • 关键词

  • 入库时间 2022-08-20 07:31:35

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