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首页> 外文期刊>Journal of mass spectrometry: JMS >Photooxidation of glycated and non-glycated phosphatidylethanolamines monitored by mass spectrometry
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Photooxidation of glycated and non-glycated phosphatidylethanolamines monitored by mass spectrometry

机译:质谱监测糖化和非糖化磷脂酰乙醇胺的光氧化

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Phosphatidylethanolamines (PE) are one of the major components of cells membranes, namely in skin and in retina, that are continuously exposed to solar UV radiation being major targets of photooxidation damage. In addition, due to the presence of the free amine group, PE can also undergo glycation, in hyperglycemic conditions which may increase the susceptibility to oxidation. The aim of this study is to develop a model, based on mass spectrometry (MS) analysis, to identify photooxidative degradation of selected PE (POPE: PE 16:0/18:1, PLPE: PE 16:0/18:2, PAPE: PE 16:0/20:4) and glycated PEs due to UV irradiation. Photooxidation products were analysed by electrospray ionization MS (ESI-MS) and tandem MS (ESI-MS/MS) in positive and negative mode. Emphasis is placed in the influence of glycation in the generation of distinct photooxidation products. ESI-MS spectra of PE after UV photo-irradiation showed mainly hydroperoxy derivatives, due to oxidation of unsaturated fatty acyl chains. Glycated PE gave rise to several new photooxidation products formed due to oxidative cleavages of the glucose moiety, namely between C1 and C2, C2 and C3, and C5 and C6 of this sugar unit. These new products were identified by ESI-MS/MS in positive mode showing distinct neutral loss depending on the different structure of the polar head group. These new identified advanced glycated photooxidation products may have a deleterious role in the etiology of diabetic retinopathy and in diabetic retinal microvascular complications.
机译:磷脂酰乙醇胺(PE)是细胞膜的主要成分之一,即在皮肤和视网膜中,它们连续暴露于太阳紫外线辐射中,这是光氧化损伤的主要目标。此外,由于存在游离胺基,PE在高血糖条件下也可能发生糖基化,这可能会增加对氧化的敏感性。这项研究的目的是开发一种基于质谱(MS)分析的模型,以识别所选PE(POPE:PE 16:0/18:1,PLPE:PE 16:0/18:2, PAPE:PE 16:0/20:4)和归因于紫外线辐射的糖化PE。通过电喷雾电离质谱仪(ESI-MS)和串联质谱仪(ESI-MS / MS)在正负模式下分析光氧化产物。在产生独特的光氧化产物中,重点放在糖基化的影响上。紫外光照射后,PE的ESI-MS光谱显示主要是氢过氧化物衍生物,这是由于不饱和脂肪酰基链的氧化所致。由于葡萄糖部分的氧化裂解,即在该糖单元的C1和C2,C2和C3以及C5和C6之间,糖化的PE产生了几种新的光氧化产物。这些新产品通过ESI-MS / MS以正模式鉴定,根据极性头基团的不同结构,显示出明显的中性损失。这些新鉴定的高级糖基化光氧化产物可能在糖尿病性视网膜病的病因学和糖尿病性视网膜微血管并发症中具有有害作用。

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