首页> 美国卫生研究院文献>Cell Transplantation >The 3D-Printed PLGA Scaffolds Loaded with Bone Marrow-Derived Mesenchymal Stem Cells Augment the Healing of Rotator Cuff Repair in the Rabbits
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The 3D-Printed PLGA Scaffolds Loaded with Bone Marrow-Derived Mesenchymal Stem Cells Augment the Healing of Rotator Cuff Repair in the Rabbits

机译:用骨髓衍生的间充质干细胞加载3D印刷的PLGA支架增强了兔子中旋转器袖带修复的愈合

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摘要

The healing of tendon–bone in the rotator cuff is featured by the formation of the scar tissues in the interface after repair. This study aimed to determine if the 3D-printed poly lactic-co-glycolic acid (PLGA) scaffolds loaded with bone marrow-derived mesenchymal stem cells (BMSCs) could augment the rotator cuff repair in the rabbits. PLGA scaffolds were generated by the 3D-printed technology; Cell Counting Kit-8 assay evaluated the proliferation of BMSCs; the mRNA and protein expression levels were assessed by quantitative real-time polymerase chain reaction and western blot, respectively; immunohistology evaluated the rotator cuff repair; biomechanical characteristics of the repaired tissues were also assessed. 3D-printed PLGA scaffolds showed good biocompatibility without affecting the proliferative ability of BMSCs. BMSCs–PLGA scaffolds implantation enhanced the cell infiltration into the tendon-bone injunction at 4 weeks after implantation and improved the histology score in the tendon tissues after implantation. The mRNA expression levels of collagen I, III, tenascin, and biglycan were significantly higher in the scaffolds + BMSCs group at 4 weeks post-implantation than that in the scaffolds group. At 8 and 12 weeks after implantation, the biglycan mRNA expression level in the BMSCs–PLGA scaffolds group was significantly lower than that in the scaffolds group. BMSCs–PLGA scaffolds implantation enhanced collagen formation and increased collagen dimeter in the tendon–bone interface. The biomechanical analysis showed that BMSCs–PLGA scaffolds implantation improved the biomechanical properties of the regenerated tendon. The combination of 3D-printed PLGA scaffolds with BMSCs can augment the tendon–bone healing in the rabbit rotator cuff repair model.
机译:转子袖带中的肌腱骨的愈合通过修复后的界面中的瘢痕组织形成。该研究旨在确定含有骨髓衍生的间充质干细胞(BMSC)的3D印刷的聚乳酸 - 共乙醇酸(PLGA)支架是否可以增加兔子中的旋转器袖带修复。 PLGA脚手架由3D印刷技术产生;细胞计数试剂盒-8测定评估BMSC的增殖;通过定量的实时聚合酶链反应和Western印迹评估mRNA和蛋白表达水平;免疫组织学评估了旋转器袖带修复;还评估了修复组织的生物力学特性。 3D印刷的PLGA支架显示出良好的生物相容性,而不影响BMSCs的增殖能力。 BMSCS-PLGA支架植入在植入后4周将细胞浸润增强到肌腱骨禁止中,并在植入后改善肌腱组织中的组织学评分。在植入后4周的植入后4周的支架+ BMSCS组在植入后的4周,胶原蛋白I,III,Tenascin和Biglycan的mRNA表达水平显着高于支架组。在植入后的8和12周,BMSCS-PLGA支架组中的大型甘蔗mRNA表达水平显着低于支架基团的表达水平。 BMSCS-PLGA支架植入增强增强的胶原蛋白形成和增加的肌腱骨界面中的胶原蛋白的测量值。生物力学分析表明,BMSCS-PLGA支架植入改善了再生肌腱的生物力学性质。 3D印刷PLGA支架与BMSC的组合可以增强兔子肩带袖带修复模型中的肌腱骨愈合。

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