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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Imaging the tissue distribution of glucose in livers using a PARACEST sensor.
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Imaging the tissue distribution of glucose in livers using a PARACEST sensor.

机译:使用PARACEST传感器对肝脏中葡萄糖的组织分布进行成像。

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Noninvasive imaging of glucose in tissues could provide important insights about glucose gradients in tissue, the origins of gluconeogenesis, or perhaps differences in tissue glucose utilization in vivo. Direct spectral detection of glucose in vivo by (1)H NMR is complicated by interfering signals from other metabolites and the much larger water signal. One potential way to overcome these problems is to use an exogenous glucose sensor that reports glucose concentrations indirectly through the water signal by chemical exchange saturation transfer (CEST). Such a method is demonstrated here in mouse liver perfused with a Eu(3+)-based glucose sensor containing two phenylboronate moieties as the recognition site. Activation of the sensor by applying a frequency-selective presaturation pulse at 42 ppm resulted in a 17% decrease in water signal in livers perfused with 10 mM sensor and 10 mM glucose compared with livers with the same amount of sensor but without glucose. It was shown that livers perfused with 5 mM sensor but no glucose can detect glucose exported from hepatocytes after hormonal stimulation of glycogenolysis. CEST images of livers perfused in the magnet responded to changes in glucose concentrations demonstrating that the method has potential for imaging the tissue distribution of glucose in vivo.
机译:组织中葡萄糖的非侵入性成像可以提供有关组织中葡萄糖梯度,糖异生的起源或体内组织葡萄糖利用差异的重要见解。通过(1)H NMR在体内对葡萄糖进行直接光谱检测会因干扰其他代谢物的信号和更大的水信号而变得复杂。解决这些问题的一种潜在方法是使用外源葡萄糖传感器,该传感器通过化学交换饱和转移(CEST)通过水信号间接报告葡萄糖浓度。在小鼠肝脏中灌注了基于Eu(3+)的葡萄糖传感器,其中包含两个苯基硼酸酯部分作为识别位点,证实了这种方法。与使用相同量但不使用葡萄糖的肝脏相比,通过以42 ppm的频率选择性预饱和脉冲激活传感器来使灌注10 mM传感器和10 mM葡萄糖的肝脏中的水信号降低17%。结果表明,在激素刺激的糖原分解作用下,肝脏灌流了5 mM传感器,但没有葡萄糖能够检测出从肝细胞输出的葡萄糖。在磁铁中灌注的肝脏的CEST图像对葡萄糖浓度的变化做出了响应,表明该方法具有对体内葡萄糖组织分布进行成像的潜力。

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