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Is Solid Phase Microextraction (SPME) an appropriate method for extraction of volatile oxidation products from complex food systems.

机译:固相微萃取(spmE)是从复杂食品系统中提取挥发性氧化产物的合适方法。

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摘要

Volatile secondary lipid oxidation products can be identified and quantified by GC-FID or GC-MS. An extraction step is, however, needed before GC analysis. A range of different extraction methods are available such as static headspace, dynamic headspace and SPME. Each of these methods has its advantages and drawbacks. Among the advantages of the SPME method are its high sensitivity compared to static headspace and that it is less laborious than the dynamic headspace method. For these reasons, the use of SPME has increased in both academia and industry during the last decade. The extraction efficiency obtained with the SPME method can be affected by different factors such as fiber type, stirring of sample versus not stirring, extraction temperature and time. These factors can easily be controlled and optimized to obtain the highest possible extraction efficiency. However, extraction efficiency can also be affected by uncontrollable factors such as batch to batch variation between fibers of the same type and presence of compounds in the sample matrix, which competes with the compounds of interest for adsorption to the SPME fiber. The latter factor is particularly a problem when SPME is used for analysis of lipid oxidation during storage of complex food matrices. Examples on how uncontrollable factors have affected results obtained with the SPME method in the authors’ lab will be given and the appropriateness of the SPME method for the analysis of volatile oxidation products in selected food systems will be discussed.
机译:挥发性二级脂质氧化产物可以通过GC-FID或GC-MS进行鉴定和定量。但是,在GC分析之前需要提取步骤。可以使用多种不同的提取方法,例如静态顶空,动态顶空和SPME。这些方法中的每一种都有其优点和缺点。 SPME方法的优点之一是与静态顶空方法相比灵敏度高,并且比动态顶空方法省力。由于这些原因,在过去的十年中,SPME在学术界和工业界的使用都在增加。用SPME方法获得的萃取效率可能受不同因素的影响,例如纤维类型,样品搅拌与不搅拌,萃取温度和时间。这些因素可以轻松控制和优化以获得最高的提取效率。但是,萃取效率也可能受到不可控因素的影响,例如,相同类型的纤维之间的批次间变化以及样品基质中化合物的存在,它们与目标化合物竞争吸附到SPME纤维上。当将SPME用于分析复杂食品基质存储期间的脂质氧化时,后一个因素尤其成问题。本文将举例说明无法控制的因素如何影响使用SPME方法在作者实验室中获得的结果,并讨论SPME方法在所选食品系统中分析挥发性氧化产物的适用性。

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