铁代谢与基于基因的MRI铁对比的界面。

Magnetic resonance insights Pub Date : 2015-10-04 eCollection Date: 2015-01-01 DOI:10.4137/MRI.S23555
Donna E Goldhawk, Neil Gelman, Anindita Sengupta, Frank S Prato
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引用次数: 8

摘要

使用基于基因的方法来跟踪细胞和分子的活动与磁共振成像(MRI)有许多优点。横向弛豫率与细胞总铁含量之间的强相关性为MRI报告基因表达的灵敏定量检测提供了基础。除了生物物理概念外,哺乳动物铁调控的一般特征为解释基于基因铁标记的分子MRI提供了有价值的背景。特别提到趋磁细菌基因表达作为哺乳动物细胞跟踪的磁共振造影剂的潜力,不同细胞培养模型的研究强调了内在铁调节对MRI信号的影响。哺乳动物铁代谢的动态调节与设计用于MRI隔离铁生物矿物质的表达系统之间的相互作用,从它们对MR图像解释的潜在影响的角度提出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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The Interface Between Iron Metabolism and Gene-Based Iron Contrast for MRI.

Using a gene-based approach to track cellular and molecular activity with magnetic resonance imaging (MRI) has many advantages. The strong correlation between transverse relaxation rates and total cellular iron content provides a basis for developing sensitive and quantitative detection of MRI reporter gene expression. In addition to biophysical concepts, general features of mammalian iron regulation add valuable context for interpreting molecular MRI predicated on gene-based iron labeling. With particular reference to the potential of magnetotactic bacterial gene expression as a magnetic resonance (MR) contrast agent for mammalian cell tracking, studies in different cell culture models highlight the influence of intrinsic iron regulation on the MRI signal. The interplay between dynamic regulation of mammalian iron metabolism and expression systems designed to sequester iron biominerals for MRI is presented from the perspective of their potential influence on MR image interpretation.

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