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Ultrasound imaging of splenomegaly as a proxy to monitor colon tumor development in Apcmin716/+ mice

机译:超声检查脾肿大以监测Apc中结肠肿瘤的发展min716 / +小鼠

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摘要

Animal models of colon cancer are widely used to understand the molecular mechanisms and pathogenesis of the disease. These animal models require a substantial investment of time and traditionally necessitate the killing of the animal to measure the tumor progression. Several in vivo imaging techniques are being used in both human clinics and preclinical studies, albeit at high cost and requiring particular expertise. Here, we report that the progression of splenomegaly coincides with and positively correlates to colon tumor development in Apc min716/+ mice expressing a mutant gene encoding an adenomatous polyposis coli protein truncated at amino acid 716. Ultrasound image‐based spleen size measurement precisely mirrors splenomegaly development in vivo in the tumor‐laden Apc min716/+ mice. Moreover, the spleen dimensions extracted from the ultrasound sonograms are positively correlated with normalized spleen weight and the number and area of colon tumors. Hence, we propose measuring the spleen size in vivo by ultrasound imaging as a novel approach to estimate splenomegaly development and to indirectly monitor colon tumor development in Apc min716/+ mice. The widespread use of ultrasound machines in the laboratory setting, coupled with the fact that it is a noninvasive method, make it a straightforward and useful tool for monitoring the experimental progress of colon cancer in mice and determining end points without killing animals strictly for diagnostics purposes.
机译:结肠癌的动物模型被广泛用于了解疾病的分子机制和发病机理。这些动物模型需要大量时间,传统上需要杀死动物以测量肿瘤的进展。尽管成本高且需要特殊专业知识,但几种人类体内成像技术已在人类诊所和临床前研究中使用。在这里,我们报道了Apc min716 / + 小鼠脾脏肿大的进展与结肠肿瘤的发生同时发生并呈正相关,Apc min716 / + 小鼠表达的突变基因编码一个截短的第716位氨基酸的腺瘤性息肉病大肠杆菌蛋白。基于Spleen的脾脏大小测量可以精确反映出荷瘤的Apc min716 / + 小鼠体内脾肿大的发展。此外,从超声超声图提取的脾脏尺寸与标准化脾脏重量以及结肠肿瘤的数量和面积呈正相关。因此,我们建议通过超声成像在体内测量脾脏大小作为一种新的方法来估计脾脏肿大的发展并间接监测Apc min716 / + 小鼠的结肠肿瘤的发展。超声仪在实验室中的广泛使用,加上它是一种非侵入性方法,使它成为监测小鼠结肠癌实验进展和确定终点而无需严格杀死动物以达到诊断目的的简单有效的工具。

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