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Wearable Fixation Device for a Magnetically Controllable Therapeutic Agent Carrier: Application to Cartilage Repair

机译:磁控治疗剂载体的耐磨固定装置:在软骨修复中的应用

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摘要

Recently, significant research efforts have been devoted toward the development of magnetically controllable drug delivery systems, however, drug fixation after targeting remains a challenge hindering long-term therapeutic efficacy. To overcome this issue, we present a wearable therapeutic fixation device for fixing magnetically controllable therapeutic agent carriers (MCTACs) at defect sites and its application to cartilage repair using stem cell therapeutics. The developed device comprises an array of permanent magnets based on the Halbach array principle and a wearable band capable of wrapping the target body. The design of the permanent magnet array, in terms of the number of magnets and array configuration, was determined through univariate search optimization and 3D simulation. The device was fabricated for a given rat model and yielded a strong magnetic flux density (exceeding 40 mT) in the region of interest that was capable of fixing the MCTAC at the desired defect site. Through in-vitro and in-vivo experiments, we successfully demonstrated that MCTACs, both a stem cell spheroid and a micro-scaffold for cartilage repair, could be immobilized at defect sites. This research is expected to advance precise drug delivery technology based on MCTACs, enabling subject-specific routine life therapeutics. Further studies involving the proposed wearable fixation device will be conducted considering prognostics under actual clinical settings.
机译:近来,已经致力于磁控药物递送系统的开发方面的重大研究努力,但是,靶向后的药物固定仍然是阻碍长期治疗功效的挑战。为了克服这个问题,我们提出了一种可穿戴的治疗性固定装置,用于将磁性可控治疗剂载体(MCTAC)固定在缺陷部位,并将其应用于使用干细胞治疗剂的软骨修复中。开发的设备包括一个基于Halbach阵列原理的永磁体阵列和一个能够包裹目标身体的可穿戴带。通过单变量搜索优化和3D模拟,可以确定永磁体阵列的设计,包括磁体数量和阵列配置。该设备是为给定的大鼠模型制造的,并在感兴趣的区域产生了强大的磁通密度(超过40 mT),能够将MCTAC固定在所需的缺陷部位。通过体外和体内实验,我们成功地证明了干细胞球体和微支架用于软骨修复的MCTACs可以固定在缺损部位。预计这项研究将促进基于MCTAC的精确药物递送技术的发展,从而实现特定对象的常规生命治疗。考虑到实际临床情况下的预后,将进行涉及拟议的可穿戴固定装置的进一步研究。

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