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Active Photosensitizers in Butter Detected by Fluorescence Spectroscopy and Multivariate Curve Resolution

机译:荧光光谱和多元曲线分辨率检测的黄油中的活性光敏剂

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In this study,fluorescence excitation and emission matrices and multivariate curve resolution(PARAFAC)were used to detect and characterize active photosensitizers spectrally in butter.Butter samples were packed under high(air)and low oxygen(<0.05%)atmospheres and exposed to violet,green,or red light.Six photosensitizers were found:riboflavin,protoporphyrin,hematoporphyrin,a chlorophyll a-like molecule,and two unidentified tetrapyrrols.By estimation of relative concentrations,we could follow how each sensitizer was photodegraded as function of wavelength,oxygen level,and time.The degradation rate of protoporphyrin,hematoporphyrin,chlorophyll a,and one of the tetrapyrrols correlated well(0.83-0.91)with the formation of sensory measured oxidation.The results suggest that mainly type I photoreactions were responsible for the degradation of photosensitizers in both high and low oxygen atmosphere.Type II photoreactions(generation of singlet oxygen)were involved in the oxidation of butter stored in air.The study shows that PARAFAC modeling of fluorescence landscapes is an excellent tool for studying photooxidation in complex systems.
机译:本研究使用荧光激发和发射矩阵以及多元曲线分辨率(PARAFAC)来检测和表征黄油中的活性光敏剂。黄油样品在高(空气)和低氧(<0.05%)大气下包装并暴露于紫色,绿或红光。发现了六种光敏剂:核黄素,原卟啉,血卟啉,叶绿素a样分子和两个未鉴定的四吡咯。通过估算相对浓度,我们可以跟踪每种敏化剂是如何随着波长,氧气的功能而被光降解的。原卟啉,杂卟啉,叶绿素a和一种四吡咯的降解速率与感官测得的氧化形成良好的相关性(0.83-0.91)。结果表明,I型光反应主要是由I型光反应引起的。高氧和低氧气氛中的光敏剂。II型光反应(产生单线态氧)与黄油的氧化有关研究表明,PARAFAC对荧光景观的建模是研究复杂系统中光氧化作用的绝佳工具。

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