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Imaging the production of singlet oxygen in vivo using a new fluorescent sensor, Singlet Oxygen Sensor Green?

机译:使用新型荧光传感器Singlet Oxygen Sensor Green ?对体内单线态氧的产生进行成像

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Singlet oxygen is known to be produced by cells in response to photo-oxidative stresses and wounding. Due to singlet oxygen being highly reactive, it is thought to have a very short half-life in biological systems and, consequently, it is difficult to detect. A new commercially available reagent (singlet oxygen sensor green, SOSG), which is highly selective for singlet oxygen, was applied to a range of biological systems that are known to generate singlet oxygen. Induction of singlet oxygen production by the addition of myoglobin to liposome preparations demonstrated that the singlet oxygen-induced increases in SOSG fluorescence closely followed the increase in the concentration of conjugated dienes, which is stoichiometrically related to singlet oxygen production. Applications of photo-oxidative stresses to diatom species and leaves, which are known to result in the production of singlet oxygen, produced large increases in SOSG fluorescence, as did the addition of 3-(3′,4′-dichlorophenyl)1,1-dimethylurea (DCMU) to these systems, which inhibits electron transport in photosystem II and stimulates singlet oxygen production. The conditional fluorescent (flu) mutant of Arabidopsis produces singlet oxygen when exposed to light after a dark period, and this coincided with a large increase in SOSG fluorescence. Wounding of leaves was followed by an increase in SOSG fluorescence, even in the dark. It is concluded that SOSG is a useful in vivo probe for the detection of singlet oxygen.
机译:已知单线态氧是由细胞响应光氧化应激和创伤而产生的。由于单线态氧具有高反应性,因此认为其在生物系统中的半衰期非常短,因此难以检测。对单线态氧具有高度选择性的一种新的市售试剂(单线态氧传感器绿色,SOSG)已应用于一系列已知会产生单线态氧的生物系统。通过向脂质体制剂中添加肌红蛋白来诱导单线态氧的产生表明,单线态氧诱导的SOSG荧光增加紧随共轭二烯浓度的增加,这在化学计量上与单线态氧产生有关。向硅藻物种和叶片施加光氧化应激(已知会导致产生单线态氧)会导致SOSG荧光大幅增加,与添加3-(3',4'-二氯苯基)1,1相同-二甲基脲(DCMU)进入这些系统,从而抑制了光系统II中的电子传输并刺激了单线态氧的产生。拟南芥的条件性荧光(flu)突变体在黑暗时期暴露于光下后会产生单线态氧,这与SOSG荧光的大幅增加相吻合。伤口受伤后,即使在黑暗中,SOSG荧光也增加。结论是,SOSG是用于检测单线态氧的有用的体内探针。

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