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The first application of terephthalate fluorescence for highly selective detection of hydroxyl radicals in thylakoid membranes.

机译:对苯二甲酸荧光技术在类囊体膜中羟基自由基高度选择性检测中的首次应用。

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Possibilities and limitations of the detection of hydroxyl radicals via the conversion of terephthalate (TPA) into the strongly fluorescent hydroxyterephthalate were investigated in order to adapt this method for chlorophyll-containing samples. Using model chemical sources of various reactive oxygen species, we confirmed that TPA detects hydroxyl radicals very sensitively, but is not reactive to either hydrogen peroxide or superoxide radicals. As a new result, we showed that the conversion of TPA to hydroxyterephthalate cannot be induced by singlet oxygen, which may be produced in photosynthetic systems under stress. Until now, the TPA method has not been used in photosynthesis research, so necessary adaptations to minimise the effects of chlorophyll and buffering sugars on hydroxyl radical detection were also explored and optimal conditions for using the method in thylakoid preparations are suggested. Anticipating further plant physiology applications, usefulness of the TPA method was tested in a wider range of pH than reported earlier. To demonstrate that this simple and highly specific method can be used as an alternative approach for the detection of hydroxyl radicals in plant samples, we measured these radicals in isolated thylakoid membranes exposed to 312 nm ultraviolet radiation.
机译:为了使这种方法适用于含叶绿素的样品,研究了通过将对苯二甲酸酯(TPA)转化为强荧光羟基对苯二甲酸酯来检测羟基自由基的可能性和局限性。使用各种活性氧的模型化学来源,我们确认TPA非常灵敏地检测到羟基自由基,但对过氧化氢或超氧自由基均无反应。作为一个新的结果,我们表明TPA向羟基对苯二酸酯的转化不能由单线态氧诱导,这种单线态氧可能在光合系统中在压力下产生。迄今为止,TPA方法尚未用于光合作用研究,因此还探索了必要的适应措施,以最小化叶绿素和缓冲糖对羟基自由基检测的影响,并提出了在类囊体制剂中使用该方法的最佳条件。预期将进一步应用植物生理学,在较早的报道中更广泛的pH范围内测试了TPA方法的有效性。为了证明这种简单且高度特异性的方法可以用作检测植物样品中羟基自由基的替代方法,我们在暴露于312 nm紫外线的孤立类囊体膜中测量了这些自由基。

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