首页> 外文期刊>Journal of AOAC International >Trans fat labeling and levels in U.S. foods: assessment of gas chromatographic and infrared spectroscopic techniques for regulatory compliance.
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Trans fat labeling and levels in U.S. foods: assessment of gas chromatographic and infrared spectroscopic techniques for regulatory compliance.

机译:美国食品中反式脂肪的标签和含量:评估气相色谱和红外光谱技术的合规性。

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Trans fatty acids are found in a variety of foods like dairy and meat products, but the major dietary sources are products that contain commercially hydrogenated fats. There has been a renewed need for accurate analytical methods for the quantitation of total trans fat since mandatory requirements to declare the amount of trans fat present in food products and dietary supplements were issued in many countries. Official capillary GC and IR methodologies are the 2 most common validated methods used to identify and quantify trans fatty acids for regulatory compliance. The present article provides a comprehensive discussion of the GC and IR techniques, including the latest attenuated total reflection (ATR)-FTIR methodology called the negative second derivative ATR-FTIR procedure, which is currently being validated in an international collaborative study. The identification and quantitation of trans fatty acid isomers by GC is reviewed and an alternative GC method is proposed using 2 temp. programs and combining their results; this proposed method deals more effectively with the resolution of large numbers of geometric and positional monoene, diene, and triene fatty acid isomers present in ruminant fats. In addition, the different methylation procedures that affect quantitative conversion to fatty acid methyl esters are reviewed. There is also a lack of commercial chromatographic standards for many trans fatty acid isomers. This review points to potential sources of interferences in the FTIR determination that may lead to inaccurate results, particularly at low trans levels. The presence of high levels of saturated fats may lead to interferences in the FTIR spectra observed for trans triacylglycerols (TAGs). TAGs require no derivatization, but have to be melted prior to IR measurement. While GC is currently the method of choice, ATR-FTIR spectroscopy is a viable, rapid alternative, and a complementary method to GC for a more rapid determination of total trans fats for food labeling purposes.
机译:反式脂肪酸存在于多种食品中,例如乳制品和肉类产品,但主要的饮食来源是含有商业氢化脂肪的产品。自从许多国家发布了宣布食品和膳食补充剂中反式脂肪含量的强制性要求以来,对精确定量分析总反式脂肪的分析方法有了新的需求。官方的毛细管气相色谱和红外方法是用于鉴定和定量反式脂肪酸以符合法规要求的两种最常用的经过验证的方法。本文提供了有关GC和IR技术的全面讨论,包括最新的衰减全反射(ATR)-FTIR方法(称为负二阶导数ATR-FTIR程序),该方法目前正在一项国际合作研究中得到验证。综述了通过气相色谱鉴定和定量反式脂肪酸异构体的方法,并提出了使用2 temp的另一种GC方法。程序并结合其结果;此提议的方法可以更有效地解决反刍动物脂肪中存在的大量几何和位置单烯,二烯和三烯脂肪酸异构体的拆分问题。另外,对影响定量转化为脂肪酸甲酯的不同甲基化方法进行了综述。许多反式脂肪酸异构体也缺乏商业色谱标准。这篇评论指出了FTIR测定中潜在的干扰源,这些干扰源可能导致结果不准确,尤其是在低反式水平下。高含量饱和脂肪的存在可能会导致反式三酰基甘油(TAG)的FTIR光谱受到干扰。 TAG不需要衍生化,但在进行IR测量之前必须先熔化。尽管目前GC是首选方法,但ATR-FTIR光谱法是可行,快速的替代方法,是GC的补充方法,可以更快地测定食品标签中的总反式脂肪。

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