首页> 外文OA文献 >Mesenchymal stem cells and porous β-tricalcium phosphate composites prepared through stem cell screen-enrich-combine(−biomaterials) circulating system for the repair of critical size bone defects in goat tibia
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Mesenchymal stem cells and porous β-tricalcium phosphate composites prepared through stem cell screen-enrich-combine(−biomaterials) circulating system for the repair of critical size bone defects in goat tibia

机译:间充质干细胞和多孔β-磷酸钙复合材料通过干细胞筛选组合( - - 细胞材料)循环系统制备,用于修复山羊胫骨的临界大小骨缺损

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摘要

Abstract Background Efficacious bone substitute is essential for the treatment of a critical size bone defect. Currently, the bone substitutes commonly used in clinical practice lack osteogenic capacity and the therapeutic efficacy is not ideal. Herein, a novel stem cell screen-enrich-combine(−biomaterials) circulating system (SECCS) was introduced to provide the substitutes with osteogenic ability. The stem cell screening, enrichment, and recombination with substitutes could be integrated during the surgical operation. Using SECCS, the bioactive mesenchymal stem cells (MSCs) and porous β-tricalcium phosphate (β-TCP) composites (MSCs/β-TCP) were rapidly prepared for critical size bone defect repair and validated in goat models of critical size tibia defects. Methods Twelve goats with right hind limb tibia defects of 30 mm were randomly divided into two groups: six (the experimental group) were treated with MSCs/β-TCP prepared by SECCS and the other six goats (the control group) were treated with pure porous β-TCP. The repair effect was assessed by x-ray, computed tomography (CT), micro-CT, histology and histomorphology 6 months after the operation. In addition, the enrichment efficacy of MSCs and the characteristics of the MSCs/β-TCP prepared by SECCS were evaluated. Results The SECCS could compound about 81.3 ± 3.0% of the MSCs in bone marrow to the porous β-TCP without affecting the cell viability. The average number of MSCs for retransplantation was 27,655.0 ± 5011.6 for each goat from the experimental group. In vitro, satisfactory biocompatibility of the MSCs/β-TCP was performed, with the MSCs spreading adequately, proliferating actively, and retaining the osteogenic potential. In vivo, the defect repair by MSCs/β-TCP with good medullary cavity recanalization and cortical remodeling was significantly superior to that of pure porous β-TCP. Conclusions The MSCs/β-TCP prepared through SECCS demonstrated significant therapeutic efficacy in goat models of critical size bone defect. This provides a novel therapeutic strategy for critical size bone defects caused by severe injury, infection, and bone tumor resection with a high profile of safety, effectiveness, simplicity, and ease.
机译:抽象背景灵验骨替代为的临界尺寸骨缺损治疗至关重要。目前,在临床实践中常用的骨替代缺乏成骨能力和治疗效果不理想。在此,一种新型干细胞丝网充实-结合(-biomaterials)循环系统(SECCS)引入,以提供与成骨能力的替代品。干细胞筛选,富集,并与替代重组可以在手术过程中被整合。使用SECCS,生物活性间充质干细胞(MSC)和多孔β磷酸三钙(β-TCP)的复合材料为临界尺寸骨缺损修复迅速制备并在临界尺寸胫骨缺损的山羊模型验证(/β-TCP的MSC)。为30mm右后肢胫骨缺损方法12山羊随机分为两组:六(实验组)与MSC /β-TCP制备SECCS和其他六只山羊(对照组)处理,用纯处理多孔β-TCP。修复作用是通过X射线评估,计算机断层扫描(CT),微CT,组织学和组织形态学操作6个月后。此外,MSC的富集功效和/β-TCP制备SECCS MSC的特性进行评价。结果SECCS化合物可以约在骨髓中的间充质干到多孔β-TCP的81.3±3.0%,而不会影响细胞生存力。的MSC用于再移植的平均数量为27,655.0±5011.6供从实验组中的每个山羊。在体外,MSC的满意的生物相容性/β-TCP,进行与扩展的MSC充分,活跃增殖,并保持成骨潜力。在体内,通过间充质干/β-TCP具有良好的髓腔再通和皮质重塑缺陷修复是显著优于纯多孔β-TCP的。结论的MSC /β-TCP通过SECCS制备证明临界尺寸骨缺损的模型山羊显著治疗功效。这提供了用于引起严重损伤,感染,和骨肿瘤切除与安全性,有效性,简单性和方便的高调临界尺寸的骨缺损的新的治疗策略。

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