磁共振成像
树突状细胞
细胞疗法
黑色素瘤
细胞
体内
免疫系统
医学
病理
化学
癌症研究
生物
免疫学
放射科
生物化学
生物技术
作者
I. Jolanda M. de Vries,W. Joost Lesterhuis,Jelle O. Barentsz,Pauline Verdijk,J. Han van Krieken,Otto C. Boerman,Wim J.G. Oyen,Johannes J. Bonenkamp,J.B.M. Boezeman,Gosse J. Adema,Jeff W. M. Bulte,Tom W. J. Scheenen,Cornelis J.A. Punt,Arend Heerschap,Carl G. Figdor
摘要
The success of cellular therapies will depend in part on accurate delivery of cells to target organs. In dendritic cell therapy, in particular, delivery and subsequent migration of cells to regional lymph nodes is essential for effective stimulation of the immune system. We show here that in vivo magnetic resonance tracking of magnetically labeled cells is feasible in humans for detecting very low numbers of dendritic cells in conjunction with detailed anatomical information. Autologous dendritic cells were labeled with a clinical superparamagnetic iron oxide formulation or (111)In-oxine and were co-injected intranodally in melanoma patients under ultrasound guidance. In contrast to scintigraphic imaging, magnetic resonance imaging (MRI) allowed assessment of the accuracy of dendritic cell delivery and of inter- and intra-nodal cell migration patterns. MRI cell tracking using iron oxides appears clinically safe and well suited to monitor cellular therapy in humans
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