首页> 外文期刊>Free Radical Biology and Medicine: The Official Journal of the Oxygen Society >Imaging of nitric oxide in a living vertebrate using a diamino-fluorescein probe.
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Imaging of nitric oxide in a living vertebrate using a diamino-fluorescein probe.

机译:使用二氨基荧光素探针对活体脊椎动物中的一氧化氮进行成像。

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摘要

Numerous approaches have been described to identify nitric oxide (NO), a free radical involved in various physiological and pathophysiological processes. One of these approaches is based on the use of chemical probes whose transformation by NO generates highly fluorescent derivatives, permitting detection of NO down to nanomolar concentrations. Here, we show that the cell-permeant diamino-fluorophore 4-amino-5-methylamino-2'-7'-difluoro-fluorescein diacetate (DAF-FM-DA) can be used to detect NO production sites in a living vertebrate, the zebrafish Danio rerio. The staining pattern obtained in larvae includes the bulbus arteriosus, forming bones, the notochord, and the caudal fin. The specificity of the signal was confirmed by its decrease in animals exposed to a NO scavenger or a NO synthase inhibitor and its increase in the presence of a NO donor. Using this method, NO production was observed to change along development in the notochord and the caudal fin whereas it remained stable in the bulbus arteriosus. Local changes in NO production in response to stressful conditions were also detected by this method. Altogether, labeling with DAF-FM DA is an efficient method to monitor changes in NO production in live zebrafish under physiological as well as pathophysiological conditions, suggesting applications to drug screening and molecular pharmacology.
机译:已经描述了许多方法来鉴定一氧化氮(NO),一氧化氮参与各种生理和病理生理过程。这些方法之一是基于化学探针的使用,化学探针的NO转化产生高度荧光的衍生物,可检测低至纳摩尔浓度的NO。在这里,我们表明细胞渗透性二氨基荧光团4-氨基-5-甲基氨基-2'-7'-二氟荧光素二乙酸酯(DAF-FM-DA)可用于检测活体脊椎动物中的NO产生部位,斑马鱼Danio rerio。在幼虫中获得的染色模式包括动脉小球,形成骨骼,脊索和尾鳍。信号的特异性通过其在暴露于NO清除剂或NO合酶抑制剂的动物中的减少以及在NO供体存在下的增加而得到证实。使用这种方法,观察到NO的产生沿着脊索和尾鳍的发育而变化,而在动脉小球中则保持稳定。通过这种方法,还可以检测出在压力条件下NO产生的局部变化。总而言之,用DAF-FM DA标记是监测生理和病理生理条件下活斑马鱼NO产生变化的有效方法,建议应用于药物筛选和分子药理学。

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