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磁加载细胞的深磁场捕获用于空间靶向治疗。

Deep magnetic capture of magnetically loaded cells for spatially targeted therapeutics.

机构信息

Shanghai Institute of Cardiovascular Diseases, Zhongshan Hospital, Fudan University, 180 Feng Lin Road, Shanghai 200032, China.

出版信息

Biomaterials. 2010 Mar;31(8):2130-40. doi: 10.1016/j.biomaterials.2009.11.062. Epub 2009 Dec 7.

Abstract

Magnetic targeting has recently demonstrated potential in promoting magnetically loaded cell delivery to target lesion, but its application is limited by magnetic attenuation. For deep magnetic capture of cells for spatial targeting therapeutics, we designed a magnetic pole, in which the magnetic field density can be focused at a distance from the pole. As flowing through a tube served as a model of blood vessels, the magnetically loaded mesenchymal stem cells (MagMSCs) were highly enriched at the site distance from the magnetic pole. The cell capture efficiency was positively influenced by the magnetic flux density, and inversely influenced by the flow velocity, and well-fitted with the deductive value by theoretical considerations. It appeared to us that the spatially-focused property of the magnetic apparatus promises a new deep targeting strategy to promote homing and engraftment for cellular therapy.

摘要

磁靶向最近在促进载磁细胞递送至靶病变部位方面显示出了潜力,但由于磁衰减,其应用受到限制。为了对细胞进行深部磁性捕获以实现空间靶向治疗,我们设计了一种磁极,其中磁场密度可在远离磁极的距离处聚焦。当流经作为血管模型的管时,载磁间充质干细胞(MagMSCs)在远离磁极的部位高度富集。细胞捕获效率受磁通密度的正向影响,受流速的反向影响,与理论推导值拟合良好。我们认为,该磁性装置的空间聚焦特性为促进细胞治疗的归巢和植入提供了一种新的深部靶向策略。

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