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In vivo imaging of gene expression.

机译:基因表达的体内成像。

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Imaging of gene expression is increasingly essential for cancer diagnosis, prediction of tumor response to various available therapies, and for monitoring response to therapy, whether it is gene or nongene therapy. Most of the work on developing techniques and methodologies for imaging gene expression has been performed in mice. Sophisticated small animal imaging technologies have been developed for this purpose. Imaging of gene expression in humans is still very limited. Nuclear medicine, positron-emission tomography, magnetic resonance imaging, and optical methods are the modalities that have shown preliminary utility in imaging gene expression. Two major imaging strategies have been investigated: using marker genes encoding either intracellular enzymes or cell-surface receptors. The first approach exploits the ability of certain enzymes to modify imaging prodrugs, so that tissue accumulation of such drugs reflects the expression. The second approach uses cell-surface expression of ligand-binding receptors that can be detected using imaging tracers. In this review, we summarize some of the imaging techniques that have been developed to detect gene expression. Copyright 2001 by W.B. Saunders Company
机译:基因表达的成像对于癌症诊断,预测对各种可用疗法的肿瘤反应以及监测对治疗的反应(无论是基因治疗还是非基因治疗)越来越重要。有关开发基因表达成像技术和方法的大部分工作已在小鼠中进行。为此,已经开发了复杂的小动物成像技术。人类中基因表达的成像仍然非常有限。核医学,正电子发射断层扫描,磁共振成像和光学方法是在基因表达成像中显示出初步实用性的方式。已经研究了两种主要的成像策略:使用编码细胞内酶或细胞表面受体的标记基因。第一种方法利用某些酶修饰成像前药的能力,从而使此类药物的组织积累反映其表达。第二种方法使用配体结合受体在细胞表面的表达,可以使用成像示踪剂进行检测。在这篇综述中,我们总结了一些用于检测基因表达的成像技术。 W.B.版权所有2001桑德斯公司

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