首页> 外文期刊>Hormone and Metabolic Research >Noninvasive monitoring of changes in pancreatic beta-cell mass by bioluminescent imaging in MIP-luc transgenic mice.
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Noninvasive monitoring of changes in pancreatic beta-cell mass by bioluminescent imaging in MIP-luc transgenic mice.

机译:通过生物发光成像在MIP-luc转基因小鼠中无创监测胰腺β细胞质量的变化。

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摘要

We have generated a transgenic mouse model (MIP- LUC) that allows real-time imaging of insulin-secreting pancreatic beta cells in living mice. The beta cells of MIP- LUC transgenic mice emit a light signal that can be visualized externally by bioluminescent imaging using specialized equipment. In order to determine whether the intensity of the bioluminescent signal accurately reflects changes in beta-cell mass rather than simply transcriptional modulation of the mouse insulin I promoter-luciferase transgene, we examined the correlation between the bioluminescent signal and the beta-cell mass in MIP- LUC mice fed a regular or high-fat Western diet. Male MIP- LUC mice were fed a standard rodent diet (5% of calories from fat) or a high-fat Western diet (42% from fat) beginning at 4 weeks of age. The bioluminescent signal and beta-cell mass were measured after 6 and 10 weeks on each diet. The body weight, beta-cell mass, and bioluminescent signal increased with age and increased further in mice fed a high-fat diet. There was a statistically significant correlation between beta-cell mass and bioluminescent signal (r (2)=0.660, p=0.00137). Thus, in vivo bioluminescent imaging can be used to noninvasively monitor changes in beta-cell mass in living MIP- LUC mice, and it complements other approaches for monitoring beta-cell mass in states of insulin resistance, obesity, and diabetes.
机译:我们已经生成了转基因小鼠模型(MIP-LUC),该模型可以对活体小鼠中分泌胰岛素的胰岛β细胞进行实时成像。 MIP-LUC转基因小鼠的β细胞发出光信号,该光信号可以使用专用设备通过生物发光成像在外部观察。为了确定生物发光信号的强度是否准确反映了β细胞质量的变化,而不是简单地对小鼠胰岛素I启动子-荧光素酶转基因进行转录调节,我们检查了MIP中生物发光信号与β细胞质量之间的相关性-LUC小鼠喂食常规或高脂西方饮食。从4周龄开始,给雄性MIP-LUC小鼠喂食标准啮齿动物饮食(脂肪中热量的5%)或高脂西方饮食(脂肪中热量的42%)。在每种饮食下6周和10周后测量生物发光信号和β细胞质量。体重,β细胞质量和生物发光信号随着年龄的增长而增加,并且在高脂饮食喂养的小鼠中进一步增加。 β细胞质量与生物发光信号之间存在统计学上的显着相关性(r(2)= 0.660,p = 0.00137)。因此,体内生物发光成像可用于非侵入性地监测活MIP-LUC小鼠中β细胞质量的变化,并且它补充了其他方法来监测胰岛素抵抗,肥胖和糖尿病状态下的β细胞质量。

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