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体内小鼠肿瘤模型成像技术的进展

Advances in imaging mouse tumour models in vivo.

作者信息

Lyons Scott K

机构信息

Oncology Department, Xenogen Corporation, Alameda, CA 94501, USA.

出版信息

J Pathol. 2005 Jan;205(2):194-205. doi: 10.1002/path.1697.

Abstract

Significant progress has been made recently in the variety of ways that cancer can be non-invasively imaged in murine tumour models. The development and continued refinement of specialized hardware for an array of small animal imaging methodologies are only partly responsible. So too has been the development of new imaging techniques and materials that enable specific, highly sensitive and quantitative measurement of a wide range of tumour-related parameters. Included amongst these new materials are imaging probes that selectively accumulate in tumours, or that become activated by tumour-specific molecules in vivo. Other tumour imaging strategies have been developed that rely upon the detection of reporter transgene expression in vivo, and these too have made a significant impact on both the versatility and the specificity of tumour imaging in living mice. The biological implications resulting from these latest advances are presented here, with particular emphasis on those associated with MRI, PET, SPECT, BLI, and fluorescence-based imaging modalities. Taken together, these advances in tumour imaging are set to have a profound impact on our basic understanding of in vivo tumour biology and will radically alter the application of mouse tumour models in the laboratory.

摘要

最近,在小鼠肿瘤模型中对癌症进行非侵入性成像的多种方法取得了重大进展。一系列小动物成像方法的专用硬件的开发和持续改进只是部分原因。新的成像技术和材料的开发也起到了作用,这些技术和材料能够对广泛的肿瘤相关参数进行特异性、高灵敏度和定量测量。这些新材料包括在肿瘤中选择性积聚或在体内被肿瘤特异性分子激活的成像探针。还开发了其他肿瘤成像策略,这些策略依赖于体内报告转基因表达的检测,它们对活体小鼠肿瘤成像的通用性和特异性也产生了重大影响。本文介绍了这些最新进展的生物学意义,特别强调了与MRI、PET、SPECT、BLI和基于荧光的成像方式相关的意义。总之,肿瘤成像的这些进展将对我们对体内肿瘤生物学的基本理解产生深远影响,并将从根本上改变小鼠肿瘤模型在实验室中的应用。

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