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采用位点特异性氘核磁共振(SNIF-NMR)法检测枫糖浆中添加的甜菜糖或蔗糖:协作研究

Detection of added beet or cane sugar in maple syrup by the site-specific deuterium nuclear magnetic resonance (SNIF-NMR) method: collaborative study.

作者信息

Martin Y L

机构信息

Eurofins Scientific, Inc., Dayton, NJ 08810-1519, USA.

出版信息

J AOAC Int. 2001 Sep-Oct;84(5):1509-21.

Abstract

Results of a collaborative study are reported for the detection of added beet or cane sugar in maple syrup by the site-specific natural isotope fractionation-nuclear magnetic resonance (SNIF-NMR) method. The method is based on the fact that the deuterium content at specific positions of the sugar molecules is different in maple syrup from that in beet or cane sugar. The syrup is diluted with pure water and fermented; the alcohol is distilled with a quantitative yield and analyzed with a high-field NMR spectrometer fitted with a deuterium probe and fluorine lock. The proportion of ethanol molecules monodeuterated at the methyl site is recorded. This parameter (D/H)I is decreased when beet sugar is added and increased when cane sugar is added to the maple syrup. The precision of the method for measuring (D/H)I was found to be in good agreement with the values already published for the application of this method to fruit juice concentrates (AOAC Official Method 995.17). An excellent correlation was found between the percentage of added beet sugar and the (D/H)I isotopic ratio measured in this collaborative study. Consequently, all samples in which exogenous sugars were added were found to have a (D/H)I isotopic ratio significantly different from the normal value for an authentic maple syrup. By extension of what is known about plants having the C4 cycle, the method can be applied to corn sweeteners as well as to cane sugar. One limitation of the method is its reduced sensitivity when applied to specific blends of beet and cane sugars or corn sweeteners. In such case, the C13 ratio measurement (see AOAC Official Method 984.23, Corn Syrup and Cane Sugar in Maple Syrup) may be used in conjunction.

摘要

本文报道了一项合作研究的结果,该研究采用位点特异性天然同位素分馏-核磁共振(SNIF-NMR)方法检测枫糖浆中添加的甜菜糖或蔗糖。该方法基于这样一个事实,即糖分子特定位置的氘含量在枫糖浆中与在甜菜糖或蔗糖中不同。将糖浆用纯水稀释并发酵;酒精以定量产率蒸馏出来,并用配备有氘探头和氟锁的高场核磁共振光谱仪进行分析。记录甲基位点单氘代乙醇分子的比例。当向枫糖浆中添加甜菜糖时,该参数(D/H)I会降低,而添加蔗糖时则会升高。发现该方法测量(D/H)I的精密度与已发表的将此方法应用于浓缩果汁的值(AOAC官方方法995.17)高度一致。在这项合作研究中,发现添加的甜菜糖百分比与测量的(D/H)I同位素比值之间存在极好的相关性。因此,所有添加了外源糖的样品的(D/H)I同位素比值均与正宗枫糖浆的正常值有显著差异。根据对具有C4循环的植物的已知情况进行推断,该方法也可应用于玉米甜味剂以及蔗糖。该方法的一个局限性是,当应用于甜菜糖和蔗糖或玉米甜味剂的特定混合物时,其灵敏度会降低。在这种情况下,可以结合使用C13比值测量方法(见AOAC官方方法984.23,枫糖浆中的玉米糖浆和蔗糖)。

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