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Kartogenin induces cartilage-like tissue formation in tendon-bone junction

机译:Kartogenin诱导肌腱-骨连接处的软骨样组织形成

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摘要

Tendon-bone junctions (TBJs) are frequently injured, especially in athletic settings. Healing of TBJ injuries is slow and is often repaired with scar tissue formation that compromises normal function. This study explored the feasibility of using kartogenin (KGN), a biocompound, to enhance the healing of injured TBJs. We first determined the effects of KGN on the proliferation and chondrogenic differentiation of rabbit bone marrow stromal cells (BMSCs) and patellar tendon stem/progenitor cells (PTSCs) in vitro. KGN enhanced cell proliferation in both cell types in a concentration-dependent manner and induced chondrogenic differentiation of stem cells, as demonstrated by high expression levels of chondrogenic markers aggrecan, collagen II and Sox-9. Besides, KGN induced the formation of cartilage-like tissues in cell cultures, as observed through the staining of abundant proteoglycans, collagen II and osteocalcin. When injected into intact rat patellar tendons in vivo, KGN induced cartilage-like tissue formation in the injected area. Similarly, when KGN was injected into experimentally injured rat Achilles TBJs, wound healing in the TBJs was enhanced, as evidenced by the formation of extensive cartilage-like tissues. These results suggest that KGN may be used as an effective cell-free clinical therapy to enhance the healing of injured TBJs.
机译:肌腱 - 骨连接(TBJ)经常受伤,特别是在运动环境中。 TBJ损伤的愈合缓慢,通常用瘢痕组织形成修复,妥协正常功能。本研究探讨了使用Kartogenin(KGN),生物编译的可行性,以增强受伤TBJ的愈合。我们首先确定了KGN对兔骨髓基质细胞(BMSCs)和髌腱茎/祖细胞(PTSC)的增殖和软骨分化的影响。 KGN以浓度依赖性方式增强了两种细胞类型中的细胞增殖,并诱导干细胞的软骨内分化,如高表达水平的软骨菌标志物,胶原II和SOX-9所证明的。此外,KGN诱导细胞培养物中的软骨状组织的形成,如通过丰富的蛋白多糖,胶原II和骨钙蛋白的染色所观察到。当在体内注射到完整的鼠髌骨肌腱中时,KGN诱导在注射区域中的软骨状组织形成。类似地,当KGN注入实验损伤的大鼠Chilles TBJ时,增强了TBJ中的伤口愈合,如广泛的软骨状组织的形成所证明。这些结果表明KGN可以用作无效的无细胞临床疗法,以增强受伤TBJ的愈合。

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  • 来源
    《骨研究(英文版)》 |2014年第1期|61-70|共10页
  • 作者

    Jianying Zhang; James H-C Wang;

  • 作者单位

    MechanoBiology Laboratory, Departments of 0rthopaedic Surgery, Bioengineering, Mechanical Engineering and Materials Science, and Physical Medicine and Rehabilitation, University of Pittsburgh, Pittsburgh, PA 15213, USA;

    MechanoBiology Laboratory, Departments of 0rthopaedic Surgery, Bioengineering, Mechanical Engineering and Materials Science, and Physical Medicine and Rehabilitation, University of Pittsburgh, Pittsburgh, PA 15213, USA;

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  • 入库时间 2022-08-19 03:40:31
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