首页> 外文期刊>Arthroscopy: the journal of arthroscopic & related surgery : official publication of the Arthroscopy Association of North America and the International Arthroscopy Association >A novel cell delivery system using magnetically labeled mesenchymal stem cells and an external magnetic device for clinical cartilage repair.
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A novel cell delivery system using magnetically labeled mesenchymal stem cells and an external magnetic device for clinical cartilage repair.

机译:使用磁性标记的间充质干细胞和用于临床软骨修复的外部磁性设备的新型细胞递送系统。

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PURPOSE: The purpose of this study was to investigate whether it is possible to successfully accumulate magnetically labeled mesenchymal stem cells (MSCs), under the direction of an external magnetic force, to the desired portion of osteochondral defects of the patellae after intra-articular injection of the MSCs. METHODS: MSCs were cultured from bone marrow and were labeled magnetically. Osteochondral defects were made in the center of rabbit and swine patellae, and magnetically labeled MSCs were injected into the knee joints either under the direction of an external magnetic force or with no magnetic force applied. In the rabbit model we evaluated the patellae macroscopically and histologically, and in the swine model we observed the patellae arthroscopically. RESULTS: Accumulation of magnetically labeled MSCs to the osteochondral defect was shown macroscopically and histologically in the rabbit model and was shown by arthroscopic observation to be attached to the chondral defect in the swine model. CONCLUSIONS: We showed the ability to deliver magnetically labeled MSCs to a desired place in the knee joint. CLINICAL RELEVANCE: Our novel approach is applicable for human cartilage defects and may open a new era of repairing cartilage defects caused by osteoarthritis or trauma by use of a less invasive technique.
机译:目的:本研究的目的是研究在关节内注射后,是否有可能在外力的作用下成功地将磁性标记的间充质干细胞(MSC)积累到the骨的骨软骨缺损所需部位MSC。方法:从骨髓中培养间充质干细胞,并进行磁性标记。在兔和猪骨的中心形成软骨软骨缺损,并在外部磁力的作用下或不施加磁力的情况下,将磁性标记的MSCs注入膝关节。在兔模型中,我们从肉眼和组织学方面评估了骨,在猪模型中,我们通过关节镜观察了ella骨。结果:在肉眼和组织学上,在兔模型中肉眼观察到了磁性标记的MSCs向软骨软骨缺损的积累,并通过关节镜观察表明其与猪模型的软骨缺损有关。结论:我们显示了将磁性标记的MSC递送到膝关节中所需位置的能力。临床相关性:我们的新方法适用于人类软骨缺损,并可能通过使用侵入性较小的技术来开辟修复由骨关节炎或创伤引起的软骨缺损的新时代。

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