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活体动物基因诱导的定量成像。

Quantitative imaging of gene induction in living animals.

作者信息

Sun X, Annala A J, Yaghoubi S S, Barrio J R, Nguyen K N, Toyokuni T, Satyamurthy N, Namavari M, Phelps M E, Herschman H R, Gambhir S S

机构信息

The Crump Institute for Molecular Imaging, UCLA School of Medicine, 90095-1770, USA.

出版信息

Gene Ther. 2001 Oct;8(20):1572-9. doi: 10.1038/sj.gt.3301554.

Abstract

Methods to repeatedly, non-invasively, and quantitatively image gene expression in living animals are rapidly emerging and should fundamentally change studies of gene expression in vivo. We previously developed assays utilizing positron emission tomography (PET) to image reporter gene expression. In this paper we: (1) describe a new bi-directional, tetracycline-inducible system that can be used to pharmacologically induce target gene expression and to quantitatively image induced expression by using a PET reporter gene; (2) demonstrate the potential of this system in transient and stable cell transfection assays; and (3) demonstrate the ability to repetitively and quantitatively image tetracycline and tetracycline analog induction of gene expression in living animals. We utilize the dopamine type-2 receptor (D(2)R) and the mutant herpes-simplex virus type 1 thymidine kinase (HSV1-sr39tk) reporter genes to validate this system. We utilize microPET technology to show that quantitative tomographic imaging of gene induction is possible. We find a high correlation (r(2) = 0.98) between 'target' and reporter gene expression. This work establishes a new technique for imaging time-dependent variation of gene expression both from vectors with inducible promoters and in transgenic animals in which pharmacologic induction of gene expression must be monitored. These techniques may be applied both in gene therapy and for the study of gene expression in transgenic animals.

摘要

在活体动物中对基因表达进行反复、无创且定量成像的方法正在迅速涌现,并且应该会从根本上改变体内基因表达的研究。我们之前开发了利用正电子发射断层扫描(PET)对报告基因表达进行成像的检测方法。在本文中,我们:(1)描述了一种新的双向四环素诱导系统,该系统可用于通过药理学方法诱导靶基因表达,并使用PET报告基因对诱导表达进行定量成像;(2)证明了该系统在瞬时和稳定细胞转染检测中的潜力;(3)证明了在活体动物中对四环素和四环素类似物诱导的基因表达进行反复和定量成像的能力。我们利用多巴胺2型受体(D(2)R)和突变的单纯疱疹病毒1型胸苷激酶(HSV1-sr39tk)报告基因来验证该系统。我们利用微型PET技术表明基因诱导的定量断层成像是可行的。我们发现“靶标”基因和报告基因表达之间具有高度相关性(r(2) = 0.98)。这项工作建立了一种新技术,用于对来自具有诱导型启动子的载体以及必须监测基因表达药理学诱导的转基因动物中的基因表达随时间的变化进行成像。这些技术可应用于基因治疗以及转基因动物中基因表达的研究。

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