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Identification and quantification of glutathione and phytochelatins from Chlorella vulgaris by RP-HPLC ESI-MS/MS and oxygen-free extraction

机译:RP-HPLC ESI-MS / MS和无氧萃取法鉴定和定量测定小球藻中的谷胱甘肽和植物螯合物

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摘要

Phytochelatins are short, cysteine-containing, detoxification peptides produced by plants, algae, and fungi in response to heavy metal exposure. These peptides auto-oxidize easily. Current extraction protocols do not adequately address losses of phytochelatins because of their oxidation and the use of indirect methods for quantification. Method enhancements include the use of an argon environment during extraction to reduce auto-oxidation, the use of glycine-13C2-labeled glutathione as an internal standard, and an electrospray ionization source with a triple quadrupole mass spectrometer as a detector. The method-detection limits were 0.081 μM for glutathione, 0.440 μM for phytochelatin 2, and 0.120 μM for phytochelatin 3. These detection limits were comparable to similar studies and were not compromised incorporating these adjustments. The use of a labeled internal standard and an inert gaseous environment during sample preparation greatly improved calibration linearity and sensitivity. Furthermore, phytochelatin degradation was significantly reduced and more accurately tracked. Previous studies involving phytochelatin analyses have likely been subject to higher variability caused by this propensity for phytochelatins to degrade rapidly in air. The method adjustments were simple and cost-effective and allowed phytochelatin analyses to be performed for hours at a time with minimal auto-oxidation.
机译:植物螯合素是植物,藻类和真菌响应重金属暴露而产生的短的,含半胱氨酸的排毒肽。这些肽很容易自氧化。由于其氧化作用和使用间接定量方法,目前的提取方案不能充分解决植物螯合素的损失。方法上的改进包括:在萃取过程中使用氩气环境以减少自身氧化;使用甘氨酸13 C2标记的谷胱甘肽作为内标;使用电喷雾电离源和三重四极杆质谱仪作为检测器。谷胱甘肽的方法检测限为0.081μM,植物螯合蛋白2的方法检出限为0.440μM,植物螯合蛋白3的方法检出限为0.120μM。在样品制备过程中使用标记的内标和惰性气体环境可大大提高校准线性和灵敏度。此外,植物螯合素的降解显着减少,并且可以更准确地追踪。先前涉及植物螯合素分析的研究可能因该植物螯合素在空气中迅速降解的倾向而具有较高的变异性。该方法的调整简单且经济高效,并且可以一次进行数小时的植物螯合素分析,且自动氧化最少。

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