Cabañero Ana I, Recio Jose L, Rupérez Mercedes
Laboratorio arbitral agroalimentario del Ministerio de Agricultura, Pesca y Alimentación, Crta. Coruña km 10,700, 28023 Madrid, Spain.
J Agric Food Chem. 2006 Dec 27;54(26):9719-27. doi: 10.1021/jf062067x.
A new procedure to determine individual sugar (sucrose, glucose, and fructose) 13C isotope ratios, using liquid chromatography-isotope ratio mass spectrometry (HPLC-IRMS), has been developed to improve isotopic methods devoted to the study of honey authenticity. For this purpose 79 commercial honey samples from various origins were analyzed. Values of delta13Choney ranged from -14.2 to -27.2", and delta13Cprotein ranged from -23.6 to -26.9". A very strong correlation is observed between the individual sugar 13C ratios, which are altered in the event of sugar addition, even at low levels. The use of Deltadelta13C [fruct-glu], Deltadelta13C [fruct-suc], and Deltadelta13C [gluc-suc] systematic differences as an authenticity criterion permits the sugar addition [C3, beet sugar; or C4, cane sugar, cane syrup, isoglucose syrup, and high-fructose corn syrup (HFCS)] to be reliably detected (DL = 1-10%). The new procedure has advantages over existing methods in terms of analysis time and sensitivity. In addition, it is the first isotopic method developed that allows beet sugar addition detection.
一种使用液相色谱-同位素比率质谱法(HPLC-IRMS)测定单个糖类(蔗糖、葡萄糖和果糖)13C同位素比率的新方法已经开发出来,以改进用于蜂蜜真伪研究的同位素方法。为此,分析了79个来自不同产地的商业蜂蜜样品。蜂蜜的δ13C值范围为-14.2至-27.2",蛋白质的δ13C值范围为-23.6至-26.9"。在单个糖类的13C比率之间观察到非常强的相关性,即使添加少量糖,这些比率也会发生变化。使用δδ13C [果糖-葡萄糖]、δδ13C [果糖-蔗糖]和δδ13C [葡萄糖-蔗糖]系统差异作为真伪标准,可以可靠地检测到添加的糖(C3,甜菜糖;或C4,蔗糖、甘蔗糖浆、异葡萄糖糖浆和高果糖玉米糖浆(HFCS))(检测限=1-10%)。新方法在分析时间和灵敏度方面优于现有方法。此外,这是开发的第一种能够检测出添加甜菜糖的同位素方法。