Dept of Food Science & Technology, Kyungpook Natl Univ, Daegu 702-701, Republic of Korea.
J Food Sci. 2012 Jun;77(6):C690-6. doi: 10.1111/j.1750-3841.2012.02740.x.
A detailed electron spin resonance (ESR) analysis for different parts of gamma-irradiated (0 to 50 kGy) dried mushroom (Lentinus edodes) was conducted to identify radiation-induced signals. All studied mushroom parts except gills produced strong dose-dependent radiation-induced ESR signals particularly at about g = 2.0076, 20005, and 1.9911 demonstrating the generation of crystalline sugar radicals following irradiation. The intensity of these signals was highest in cap skin samples, followed by the cap core, stem skin, whole mushroom powder, and stem core samples, respectively. ESR-based identification was easily possible at 2 kGy or more using mushroom cap skin or cap core as samples. The radiation-induced ESR signals were found sensitive to thermal treatment showing the limitation of ESR-based detection in case of heat-processed samples. Scanning electron microscopy (SEM) showed micro-structural damage upon irradiation resulting decreased percentage of rehydration; however, no major alteration was observed through the Fourier transform infrared (FTIR) spectra. Irradiation changed the structural morphology; however, the main functional groups were stable against radiation treatment.
Food irradiation can confirm hygienic quality and prolong the product shelf life. However, due to lack of international consensus, effective identification methods and detailed quality characterization are required for the general use of this technology.
对不同部分的γ辐照(0 至 50 kGy)干香菇(香菇)进行详细的电子自旋共振(ESR)分析,以鉴定辐射诱导信号。除了菌褶外,所有研究的蘑菇部分都产生了强烈的剂量依赖性辐射诱导 ESR 信号,特别是在约 g = 2.0076、20005 和 1.9911 处,表明在辐照后生成了结晶糖自由基。这些信号的强度在帽皮样品中最高,其次是帽芯、茎皮、全蘑菇粉和茎芯样品。使用蘑菇帽皮或帽芯作为样品,在 2 kGy 或更高剂量下,基于 ESR 的鉴定是容易实现的。辐射诱导的 ESR 信号对热处理很敏感,表明在热加工样品的情况下,基于 ESR 的检测存在局限性。扫描电子显微镜(SEM)显示辐照后微结构损伤导致再水合百分比降低;然而,通过傅里叶变换红外(FTIR)光谱未观察到主要变化。辐照改变了结构形态;然而,主要的功能基团对辐射处理是稳定的。
食品辐照可以确认卫生质量并延长产品的货架寿命。然而,由于缺乏国际共识,需要有效的识别方法和详细的质量特征描述,才能广泛应用这项技术。