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Real-time MRI for precise and predictable intra-arterial stem cell delivery to the central nervous system

机译:实时MRI可将动脉干细胞精确且可预测地输送到中枢神经系统

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摘要

Stem cell therapy for neurological disorders reached a pivotal point when the efficacy of several cell types was demonstrated in small animal models. Translation of stem cell therapy is contingent upon overcoming the challenge of effective cell delivery to the human brain, which has a volume ∼1000 times larger than that of the mouse. Intra-arterial injection can achieve a broad, global, but also on-demand spatially targeted biodistribution; however, its utility has been limited by unpredictable cell destination and homing as dictated by the vascular territory, as well as by safety concerns. We show here that high-speed MRI can be used to visualize the intravascular distribution of a superparamagnetic iron oxide contrast agent and can thus be used to accurately predict the distribution of intra-arterial administered stem cells. Moreover, high-speed MRI enables the real-time visualization of cell homing, providing the opportunity for immediate intervention in the case of undesired biodistribution.
机译:在小型动物模型中证实了几种细胞类型的功效后,用于神经系统疾病的干细胞疗法达到了关键点。干细胞疗法的翻译取决于克服向人脑有效递送细胞的挑战,后者的体积比小鼠大约1000倍。动脉内注射可以实现广泛的,全球的,但也按需的空间靶向生物分布;然而,其用途受到血管区域所指示的不可预测的细胞目的地和归巢以及安全性的限制。我们在这里显示高速MRI可用于可视化超顺磁性氧化铁造影剂的血管内分布,并因此可用于准确预测动脉内施用干细胞的分布。此外,高速MRI可以实时观察细胞归巢情况,从而在出现不良生物分布的情况下提供立即干预的机会。

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