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Noninvasive fluorescent imaging reliably estimates biomass in vivo

机译:无创荧光成像可可靠地估算体内生物量

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摘要

Whole-body optical imaging of small animals has emerged as a powerful, user-friendly, and high-throughput tool for assaying molecular and cellular processes as they occur in vivo. As with any imaging method, the utility of such technology relies on its ability to provide quantitative, biologically meaningful information about the physiologic or pathologic process of interest. Here we used an animal tumor model to evaluate the extent of correlation between noninvasively measured fluorescence and more traditional measurements of biomass (tumor volume and tumor weight). C57/BL6 mice were injected subcutaneously with murine colon adenocarcinoma cells that were engineered to express GFP Serial measurements of fluorescence intensities were performed with a macroscopic in vivo fluorescence system. The progressive increases in intensity correlated strongly with growth in tumor volume, as determined by caliper measurements (R-2 = 0.99). A more stringent correlation was found between fluorescence intensity and tumor weight (R-2 = 0.97) than between volume and weight (R-2 = 0.89). In a treatment experiment using tumor necrosis factor-a, fluorescence intensity (but not tumor volume) was able to differentiate between treated and control groups on day I post-treatment. These results validate the ability of noninvasive fluorescent imaging to quantify the number of viable, fluorescent cells in vivo.
机译:小动物的全身光学成像已成为一种功能强大,用户友好且高通量的工具,可用于检测体内发生的分子和细胞过程。与任何成像方法一样,此类技术的实用性取决于其提供有关感兴趣的生理或病理过程的定量,生物学上有意义的信息的能力。在这里,我们使用动物肿瘤模型来评估无创测量的荧光与更传统的生物量测量(肿瘤体积和肿瘤重量)之间的相关程度。向C57 / BL6小鼠皮下注射经过工程改造以表达GFP的鼠结肠腺癌细胞,并使用宏观的体内荧光系统对荧光强度进行了系列测量。通过卡尺测量确定强度的逐步增加与肿瘤体积的增长密切相关(R-2 = 0.99)。发现荧光强度和肿瘤重量(R-2 = 0.97)之间比体积和重量(R-2 = 0.89)之间更严格的相关性。在使用肿瘤坏死因子-a的治疗实验中,在治疗后的第一天,荧光强度(而不是肿瘤体积)能够区分治疗组和对照组。这些结果证实了非侵入性荧光成像定量体内活的荧光细胞数量的能力。

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