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T cells loaded with magnetic nanoparticles are retained in peripheral lymph nodes by the application of a magnetic field

机译:通过施加磁场将载有磁性纳米颗粒的T细胞保留在外周淋巴结中

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摘要

BackgroundT lymphocytes are highly dynamic elements of the immune system with a tightly regulated migration. T cell-based transfer therapies are promising therapeutic approaches which in vivo efficacy is often limited by the small proportion of administered cells that reaches the region of interest. Manipulating T cell localisation to improve specific targeting will increase the effectiveness of these therapies. Nanotechnology has been successfully used for localized release of drugs and biomolecules. In particular, magnetic nanoparticles (MNPs) loaded with biomolecules can be specifically targeted to a location by an external magnetic field (EMF). The present work studies whether MNP-loaded T cells could be targeted and retained in vitro and in vivo at a site of interest with an EMF.
机译:BackgroundT淋巴细胞是免疫系统中高度动态的元素,其迁移受到严格调节。基于T细胞的转移疗法是有前途的治疗方法,其体内功效通常受到到达目的区域的小部分施用细胞的限制。操纵T细胞定位以改善特异性靶向作用将提高这些疗法的有效性。纳米技术已成功用于药物和生物分子的局部释放。特别地,负载有生物分子的磁性纳米颗粒(MNP)可以通过外部磁场(EMF)专门定位到某个位置。本工作研究了是否可以用EMF在体内和体外将靶向MNP的T细胞靶向并保留在体内。

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