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首页> 外文期刊>Luminescence: The journal of biological and chemical luminescence >Extended-release PEG-luciferin allows for long-term imaging of firefly luciferase activity in vivo
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Extended-release PEG-luciferin allows for long-term imaging of firefly luciferase activity in vivo

机译:延长释放的PEG萤光素可长期成像萤火虫萤光素酶活性

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Bioluminescence has gained favour in the last decade as an approach for observing tumours in vivo in a non-destructive manner. This very sensitive technique is based on light emission by the reaction of luciferin with the enzyme luciferase, as measured by a photodetector. Ever since the development of recombinant tumour cell lines that have been engineered to produce luciferase, a vast number of experiments have been carried out examining tumour growth, tumour metastasis and the effect of therapeutic regimens in such cases. A primary stumbling block, however, is the relatively short circulatory half-life of luciferin. In this paper, we propose the PEGylation of 6-amino-D-luciferin to extend its in vivo circulatory half-life, thus making the possibility of long-term observations in animals possible. The covalent attachment was through a carbamate linker that is known to hydrolyse in vivo, releasing the parent compound. Based on our studies, longer emission of the PEGylated luciferin was observed, as compared to free luciferin in mice bearing PC3 prostate tumours expressing luciferase. This result suggests that this reagent can be used in applications requiring extended monitoring of luciferase activation in vivo. Copyright (c) 2008 John Wiley & Sons, Ltd.
机译:在过去的十年中,生物发光作为一种以非破坏性方式观察体内肿瘤的方法而受到人们的青睐。这种非常灵敏的技术基于荧光素与荧光素酶的发光,该荧光素是由光检测器测量的。自从开发用于产生萤光素酶的重组肿瘤细胞系以来,已经进行了大量的实验来检查这种情况下的肿瘤生长,肿瘤转移和治疗方案的效果。然而,主要的绊脚石是荧光素相对较短的循环半衰期。在本文中,我们提出了6-氨基-D-荧光素的聚乙二醇化,以延长其体内循环半衰期,从而使在动物中进行长期观察成为可能。共价连接通过已知在体内水解的氨基甲酸酯连接基释放出母体化合物。根据我们的研究,与携带荧光素酶的PC3前列腺肿瘤的小鼠体内的游离荧光素相比,观察到PEG化荧光素的发射时间更长。该结果表明,该试剂可用于需要扩展体内荧光素酶激活监测的应用中。版权所有(c)2008 John Wiley&Sons,Ltd.

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