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利用磁场微扰自动检测和特征分析超顺磁氧化铁标记的细胞和胶囊

Automated detection and characterization of SPIO-labeled cells and capsules using magnetic field perturbations.

机构信息

Department of Biological Sciences and Pittsburgh NMR Center for Biomedical Research, Carnegie Mellon University, Pittsburgh, Pennsylvania, USA.

出版信息

Magn Reson Med. 2012 Jan;67(1):278-89. doi: 10.1002/mrm.22998. Epub 2011 Jun 7.

Abstract

Understanding how individual cells behave inside living systems will help enable new diagnostic tools and cellular therapies. Superparamagnetic iron oxide particles can be used to label cells and theranostic capsules for noninvasive tracking using MRI. Contrast changes from superparamagnetic iron oxide are often subtle relative to intrinsic sources of contrast, presenting a detection challenge. Here, we describe a versatile postprocessing method, called Phase map cross-correlation Detection and Quantification (PDQ), that automatically identifies localized deposits of superparamagnetic iron oxide, estimating their volume magnetic susceptibility and magnetic moment. To demonstrate applicability, PDQ was used to detect and characterize superparamagnetic iron oxide-labeled magnetocapsules implanted in porcine liver and suspended in agarose gel. PDQ was also applied to mouse brains infiltrated by MPIO-labeled macrophages following traumatic brain injury; longitudinal, in vivo studies tracked individual MPIO clusters over 3 days, and tracked clusters were corroborated in ex vivo brain scans. Additionally, we applied PDQ to rat hearts infiltrated by MPIO-labeled macrophages in a transplant model of organ rejection. PDQ magnetic measurements were signal-to-noise ratio invariant for images with signal-to-noise ratio > 11. PDQ can be used with conventional gradient-echo pulse sequences, requiring no extra scan time. The method is useful for visualizing biodistribution of cells and theranostic magnetocapsules and for measuring their relative iron content.

摘要

了解单个细胞在活体内的行为将有助于开发新的诊断工具和细胞疗法。超顺磁性氧化铁颗粒可用于标记细胞和治疗胶囊,以便使用 MRI 进行非侵入性跟踪。与固有对比度相比,超顺磁性氧化铁的对比度变化通常很细微,这带来了检测挑战。在这里,我们描述了一种通用的后处理方法,称为相位图互相关检测和定量(PDQ),它可以自动识别超顺磁性氧化铁的局部沉积物,估算其体积磁化率和磁矩。为了演示适用性,我们使用 PDQ 检测和表征了植入猪肝中的超顺磁性氧化铁标记的磁胶囊,并将其悬浮在琼脂糖凝胶中。PDQ 还应用于创伤性脑损伤后被 MPIO 标记的巨噬细胞浸润的小鼠大脑;纵向、体内研究跟踪了 3 天内的单个 MPIO 簇,并且在体外脑扫描中证实了跟踪的簇。此外,我们还将 PDQ 应用于器官排斥移植模型中被 MPIO 标记的巨噬细胞浸润的大鼠心脏。对于信噪比大于 11 的图像,PDQ 的磁测量值与信噪比无关。PDQ 可与常规梯度回波脉冲序列一起使用,不需要额外的扫描时间。该方法可用于可视化细胞和治疗磁胶囊的生物分布,并测量它们的相对铁含量。

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