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异种移植瘤中诱导型酪氨酸酶报告基因表达的多波长光声成像。

Multi-wavelength photoacoustic imaging of inducible tyrosinase reporter gene expression in xenograft tumors.

作者信息

Paproski Robert J, Heinmiller Andrew, Wachowicz Keith, Zemp Roger J

机构信息

Department of Electrical and Computer Engineering, University of Alberta, Edmonton, Alberta T6G 2V4, Canada.

FUJIFILM VisualSonics, Inc., Toronto, Ontario M4N 3N1, Canada.

出版信息

Sci Rep. 2014 Jun 17;4:5329. doi: 10.1038/srep05329.

Abstract

Photoacoustic imaging is an emerging hybrid imaging technology capable of breaking through resolution limits of pure optical imaging technologies imposed by optical-scattering to provide fine-resolution optical contrast information in deep tissues. We demonstrate the ability of multi-wavelength photoacoustic imaging to estimate relative gene expression distributions using an inducible expression system and co-register images with hemoglobin oxygen saturation estimates and micro-ultrasound data. Tyrosinase, the rate-limiting enzyme in melanin production, is used as a reporter gene owing to its strong optical absorption and enzymatic amplification mechanism. Tetracycline-inducible melanin expression is turned on via doxycycline treatment in vivo. Serial multi-wavelength imaging reveals very low estimated melanin expression in tumors prior to doxycycline treatment or in tumors with no tyrosinase gene present, but strong signals after melanin induction in tumors tagged with the tyrosinase reporter. The combination of new inducible reporters and high-resolution photoacoustic and micro-ultrasound technology is poised to bring a new dimension to the study of gene expression in vivo.

摘要

光声成像是一种新兴的混合成像技术,它能够突破纯光学成像技术因光散射而产生的分辨率限制,从而在深层组织中提供高分辨率的光学对比信息。我们展示了多波长光声成像利用诱导表达系统估计相对基因表达分布的能力,并将图像与血红蛋白氧饱和度估计值和微超声数据进行配准。酪氨酸酶是黑色素生成中的限速酶,由于其强烈的光吸收和酶促放大机制,被用作报告基因。通过在体内给予强力霉素处理,开启四环素诱导的黑色素表达。系列多波长成像显示,在给予强力霉素处理之前的肿瘤中,或在不存在酪氨酸酶基因的肿瘤中,估计的黑色素表达非常低,但在用酪氨酸酶报告基因标记的肿瘤中,黑色素诱导后信号很强。新型诱导报告基因与高分辨率光声和微超声技术的结合,有望为体内基因表达研究带来新的维度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e841/4060505/fc09985a03a4/srep05329-f1.jpg

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