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An analysis of cellulose- and dextrose-based radicals in sweet potatoes as irradiation markers

机译:甜土豆纤维素和右旋糖基的辐照标志物分析

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Dried sweet potatoes (SPs) are often irradiated for improved safety and shelf life. Formation of irradiation-derived radicals was analyzed using electron paramagnetic resonance (EPR) spectroscopy. These irradiation-specific radicals can be used to characterize the irradiation history of dry plant-based foods containing cellulose and sugars. The signal characteristics (intensity and peak shape) were evaluated at different sample locations (skin and flesh), as a function of sample preparation method (grinding, sieving, and pelletizing). The signal intensity was quantified using a double integration method of the peaks based on the area under the curve. The sieving caused ca. 50% decrease in total signal intensity as compared to nonsieved samples due to loss of cellulose-based radicals. The flesh of irradiated SP showed complex EPR spectra with multiple satellite peaks of cellulose radicals (333.5 and 338.8 mT) and split peak of dextrose radicals (337.4 mT); while skin spectra were distinctive of cellulose radicals. In this study, we demonstrated the effects of sample composition and preparation method on formation and analysis of irradiation-specific radicals based on EPR.
机译:干甜土豆(SPS)通常被照射,以改善安全性和保质期。使用电子顺磁共振(EPR)光谱分析辐射衍生的自由基。这些辐射特异性基团可用于表征含有纤维素和糖的干燥植物的食物的照射史。根据样品制备方法(研磨,筛分和造粒),在不同的样品位置(皮肤和肉体)处评价信号特性(强度和峰值)。使用基于曲线下的区域的峰的双积分方法量化信号强度。筛分造成了CA.与由于基于纤维素的基础损失的损失而相比,总信号强度的减少50%。辐照的SP肉体显示复杂的EPR光谱,具有多种纤维素自由基的卫星峰(333.5和338.8mt),并分裂葡萄糖自由基(337.4mt);虽然皮肤光谱是纤维素的自由基。在这项研究中,我们证明了样品组合物的影响和制备方法对基于EPR的辐照特异性的形成和分析。

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