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首页> 外文期刊>BMC Musculoskeletal Disorders >Pulsed electromagnetic fields combined with a collagenous scaffold and bone marrow concentrate enhance osteochondral regeneration: an in vivo study
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Pulsed electromagnetic fields combined with a collagenous scaffold and bone marrow concentrate enhance osteochondral regeneration: an in vivo study

机译:脉冲电磁场​​与胶原屑和骨髓浓缩物联合增强骨质色素再生:体内研究

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摘要

The study aimed to evaluate the combined effect of Pulsed Electromagnetic Field (PEMF) biophysical stimulation and bone marrow concentrate (BMC) in osteochondral defect healing in comparison to the treatment with scaffold alone. An osteochondral lesion of both knees was performed in ten rabbits. One was treated with a collagen scaffold alone and the other with scaffold seeded with BMC. Half of the animals were stimulated by PEMFs (75?Hz, 1.5 mT, 4?h/day) and at 40?d, macroscopic, histological and histomorphometric analyses were performed to evaluate osteochondral defect regeneration. Regarding cartilage, the addition of BMC to the scaffold improved cell parameters and the PEMF stimulation improved both cell and matrix parameters compared with scaffold alone. The combination of BMC and PEMFs further improved osteochondral regeneration: there was an improvement in macroscopic, cartilage cellularity and matrix parameters and a reduction in the percentage of cartilage under the tidemark. Epiphyseal bone healing improved in all the osteochondral defects regardless of treatment, although PEMFs alone did not significantly improve the reconstruction of subchondral bone in comparison to treatment with scaffold alone. Results show that BMC and PEMFs might have a separate effect on osteochondral regeneration, but it seems that they have a greater effect when used together. Biophysical stimulation is a non-invasive therapy, free from side effects and should be started soon after BMC transplantation to increase the quality of the regenerated tissue. However, because this is the first explorative study on the combination of a biological and a biophysical treatment for osteochondral regeneration, future preclinical and clinical research should be focused on this topic to explore mechanisms of action and the correct clinical translation.
机译:该研究旨在评估脉冲电磁场​​(PEMF)生物物理刺激和骨髓浓缩物(BMC)在骨质色神经缺损愈合中的综合作用与单独的支架治疗相比。两个膝关节的骨质色神经病变在十只兔子中进行。一个人用胶原蛋白支架单独处理,另一种用BMC播种的支架。通过PEMF(75〜Hz,1.5mt,4·h /天)刺激一半的动物,并在40℃下进行,进行宏观,组织学和组织学和组织学分析以评估骨髓缺陷再生。关于软骨,与单独的支架相比,将BMC加入支架改善的细胞参数和PEMF刺激改善了细胞和基质参数。 BMC和PEMFS的组合进一步改善了骨质色素再生:宏观,软骨细胞性和基质参数的改善以及潮汐下的软骨百分比减少。无论治疗如何,骨骺骨愈合都改善了所有骨质色神经缺陷,尽管单独的PEMF没有显着改善骨髓内骨的重建与单独的支架治疗。结果表明,BMC和PEMFS可能对骨科再生具有单独的影响,但似乎它们在一起使用时具有更大的效果。生物物理刺激是一种非侵入性疗法,没有副作用,BMC移植后应该很快开始,以提高再生组织的质量。然而,因为这是对生物和生物物理治疗的第一探索性研究,对骨科再生的生物物理治疗,未来的临床前和临床研究应专注于探索行动机制和正确的临床翻译机制。

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