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一种增强基于细胞的基因疗法疗效的新型磁性方法。

A novel magnetic approach to enhance the efficacy of cell-based gene therapies.

作者信息

Muthana M, Scott S D, Farrow N, Morrow F, Murdoch C, Grubb S, Brown N, Dobson J, Lewis C E

机构信息

Tumour Targeting Group, Academic Unit of Pathology, University of Sheffield Medical School, Sheffield, UK.

出版信息

Gene Ther. 2008 Jun;15(12):902-10. doi: 10.1038/gt.2008.57. Epub 2008 Apr 17.

Abstract

Attempts have been made to use various forms of cellular vectors to deliver therapeutic genes to diseased tissues like malignant tumours. However, this approach has proved problematic due to the poor uptake of these vectors by the target tissue. We have devised a novel way of using magnetic nanoparticles (MNPs) to enhance the uptake of such 'therapeutically armed' cells by tumours. Monocytes naturally migrate from the bloodstream into tumours, so attempts have been made to use them to deliver therapeutic genes to these sites. However, transfected monocytes injected systemically fail to infiltrate tumours in large numbers. Using a new in vitro assay for assessing monocyte extravasation, we show that the ability of transfected human monocytes to migrate across a human endothelial cell layer into a 3D tumour spheroid is markedly increased when cells are pre-loaded with MNPs and a magnetic force is applied close to the spheroid. Furthermore, systemic administration of such 'magnetic' monocytes to mice bearing solid tumours led to a marked increase in their extravasation into the tumour in the presence of an external magnet. This new magnetic targeting approach could be used to increase the targeting, and thus the efficacy, of many cell-based gene therapies in vivo.

摘要

人们已尝试使用各种形式的细胞载体将治疗性基因传递到诸如恶性肿瘤等患病组织。然而,由于这些载体在靶组织中的摄取较差,这种方法已被证明存在问题。我们设计了一种利用磁性纳米颗粒(MNP)来增强肿瘤对这类“携带治疗物质”细胞摄取的新方法。单核细胞自然地从血液中迁移到肿瘤中,因此人们尝试利用它们将治疗性基因传递到这些部位。然而,全身注射转染的单核细胞无法大量浸润肿瘤。通过一种新的体外测定单核细胞外渗的方法,我们发现,当细胞预先加载MNP并在靠近球体处施加磁力时,转染的人单核细胞穿过人内皮细胞层迁移到三维肿瘤球体中的能力会显著增强。此外,对患有实体瘤的小鼠全身给药这种“磁性”单核细胞,在存在外部磁铁的情况下,会导致其向肿瘤的外渗显著增加。这种新的磁性靶向方法可用于提高许多基于细胞的基因疗法在体内的靶向性,从而提高疗效。

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