首页> 外文期刊>American Journal of Sports Medicine >Mesenchymal Stem Cell Secretome Improves Tendon Cell Viability In Vitro and Tendon-Bone Healing In Vivo When a Tissue Engineering Strategy Is Used in a Rat Model of Chronic Massive Rotator Cuff Tear
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Mesenchymal Stem Cell Secretome Improves Tendon Cell Viability In Vitro and Tendon-Bone Healing In Vivo When a Tissue Engineering Strategy Is Used in a Rat Model of Chronic Massive Rotator Cuff Tear

机译:间充质干细胞沉淀在组织工程策略用于慢性大规模旋转箍撕裂的大鼠模型时,在体外和肌腱 - 骨愈合的体外和肌腱骨愈合

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摘要

Background: Massive rotator cuff tears (MRCTs) represent a major clinical concern, especially when degeneration and chronicity are involved, which highly compromise healing capacity. Purpose: To study the effect of the secretome of mesenchymal stem cells (MSCs) on tendon cells (TCs) followed by the combination of these activated TCs with an electrospun keratin-based scaffold to develop a tissue engineering strategy to improve tendon-bone interface (TBi) healing in a chronic MRCT rat model. Study Design: Controlled laboratory study. Methods: Human TCs (hTCs) cultured with the human MSCs (hMSCs) secretome (as conditioned media [CM]) were combined with keratin electrospun scaffolds and further implanted in a chronic MRCT rat model. Wistar-Han rats (N = 15) were randomly assigned to 1 of 3 groups: untreated lesion (MRCT group, n = 5), lesion treated with a scaffold only (scaffold-only group, n = 5), and lesion treated with a scaffold seeded with hTCs preconditioned with hMSCs-CM (STC_hMSC_CM group, n = 5). After sacrifice, 16 weeks after surgery, the rotator cuff TBi was harvested for histological analysis and biomechanical testing. Results: The hMSCs secretome increased hTCs viability and density in vitro. In vivo, a significant improvement of the tendon maturing score was observed in the STC_hMSC_CM group (mean ± standard error of the mean, 15.6 ± 1.08) compared with the MRCT group (11.0 ± 1.38; P P P < .01). Conclusion: The results demonstrated that hMSCs-CM increased hTCs viability and density in vitro. Clear benefits also were observed when these primed cells were integrated into a tissue engineering strategy with an electrospun keratin scaffold, as evidenced by improved histological and biomechanical properties for the STC_hMSC_CM group compared with the MRCT group. Clinical Relevance: This work supports further investigation into the use of MSC secretome for priming TCs toward a more differentiated phenotype, and it promotes the tissue engineering strategy as a promising modality to help improve treatment outcomes for chronic MRCTs.
机译:背景:大规模旋转器袖口撕裂(MRCTS)代表主要的临床关注,特别是当涉及退化和慢性时,这是高度损害愈合能力的影响。目的:研究间充质干细胞(MSCs)沉淀对肌腱细胞(TCS)的影响,然后与这些活化的TCS与基于Electur纺的角蛋白的支架组合,以产生组织工程策略以改善肌腱骨界面( TBI)在慢性MRCT大鼠模型中愈合。研究设计:受控实验室研究。方法:用人MSCs(HMSCs)沉淀(作为调节培养基[Cm])培养的人TCS(HTCS)与角蛋白电纺支架组合并进一步植入慢性MRCT大鼠模型中。将Wistar-Han大鼠(n = 15)随机分配给3组中的1个:未处理的病变(MRCT组,N = 5),用脚支架处理的病变(仅脚手架组,n = 5),和病变治疗用HMSCs-cm(stc_hmsc_cm组,n = 5)播种的支柱播种。牺牲后,手术后16周,收获转子袖带TBI以进行组织学分析和生物力学测试。结果:HMSCS沉淀量增加了HTCS活力和密度体外。在体内,与MRCT组相比,在STC_HMSC_CM组(平均值,15.6±1.08)中观察到肌腱成熟得分的显着改善(11.0±1.38; p p <.01)。结论:结果表明,HMSCS-CM在体外增加HTCS活力和密度。当将这些引发的细胞与静电梭蛋白支架整合到组织工程策略中时,也观察到透明益处,与MRCT组相比,STC_HMSC_CM组的组织学和生物力学性能提高了。临床相关性:这项工作支持进一步调查使用MSC ecrics ecricsicle促进TCS朝向更分化的表型,促进组织工程策略作为有前途的模态,以帮助改善慢性MRCTS的治疗结果。

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  • 作者单位

    Life and Health Sciences Research Institute (ICVS) School of Medicine University of Minho Campus;

    Life and Health Sciences Research Institute (ICVS) School of Medicine University of Minho Campus;

    Pathology Department Hospital de S?o Jo?o Porto Portugal;

    Orthopaedics Department Hospital de Braga and Hospital Privado de Braga Braga Portugal;

    Life and Health Sciences Research Institute (ICVS) School of Medicine University of Minho Campus;

    CICECO Department of Materials and Ceramic Engineering University of Aveiro Campus Universitário;

    CICECO Department of Materials and Ceramic Engineering University of Aveiro Campus Universitário;

    Life and Health Sciences Research Institute (ICVS) School of Medicine University of Minho Campus;

    School of Materials Science and Engineering Nanyang Technological University Singapore;

    School of Materials Science and Engineering Nanyang Technological University Singapore;

    School of Materials Science and Engineering Nanyang Technological University Singapore;

    Life and Health Sciences Research Institute (ICVS) School of Medicine University of Minho Campus;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 运动医学;
  • 关键词

    massive rotator cuff tear; hMSC secretome; tendon-bone healing;

    机译:巨大的旋转器袖口撕裂;HMSC ecistleme;肌腱骨愈合;

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