Department of Agricultural Biochemistry, Faculty of Agriculture, Ain Shams University, Hadayek Shobra, Cairo 11241, Egypt.
Department of Flavor Chemistry, Institute of Food Science and Biotechnology, University of Hohenheim, Fruwirthstraße 12, Stuttgart 70599, Germany.
J Agric Food Chem. 2024 May 1;72(17):9523-9554. doi: 10.1021/acs.jafc.3c08129. Epub 2024 Apr 19.
Gas chromatography-olfactometry (GC-O) has made significant advancements in recent years, with breakthroughs in its applications and the identification of its limitations. This technology is widely used for analyzing complex odor patterns. The review begins by explaining the principles of GC-O, including sample preparation, separation methods, and olfactory evaluation techniques. It then explores the diverse range of applications where GC-O has found success, such as food and beverage industries, environmental monitoring, perfume and aroma development, and forensic analysis. One of the major breakthroughs in GC-O analysis is the improvement in separation power and resolution of odorants. Techniques like rapid GC, comprehensive two-dimensional GC, and multidimensional GC have enhanced the identification and quantification of odor-active chemicals. However, GC-O also has limitations. These include the challenges in detecting and quantifying trace odorants, dealing with matrix effects, and ensuring the repeatability and consistency of results across laboratories. The review examines these limitations closely and discusses potential solutions and future directions for improvement in GC-O analysis. Overall, this review presents a comprehensive overview of the recent advances in GC-O, covering breakthroughs, applications, and limitations. It aims to promote the wider usage of GC-O analysis in odor analysis and related industries. Researchers, practitioners, and anyone interested in leveraging the capabilities of GC-O in analyzing complex odor patterns will find this review a valuable resource. The article highlights the potential of GC-O and encourages further research and development in the field.
气相色谱-嗅闻分析(GC-O)近年来取得了重大进展,在其应用和局限性的识别方面取得了突破。该技术广泛用于分析复杂的气味模式。综述首先解释了 GC-O 的原理,包括样品制备、分离方法和嗅觉评估技术。然后探讨了 GC-O 在食品和饮料行业、环境监测、香水和香料开发以及法医分析等多个领域取得成功的广泛应用。GC-O 分析的一个主要突破是改善了对气味物质的分离能力和分辨率。快速气相色谱、全面二维气相色谱和多维气相色谱等技术增强了对气味活性化学物质的识别和定量。然而,GC-O 也存在局限性。这些包括检测和定量痕量气味物质的挑战、处理基质效应以及确保实验室之间结果的重复性和一致性。该综述仔细研究了这些局限性,并讨论了 GC-O 分析中改进的潜在解决方案和未来方向。总的来说,本综述全面概述了 GC-O 的最新进展,涵盖了突破、应用和局限性。它旨在促进 GC-O 分析在气味分析和相关行业中的更广泛应用。研究人员、从业人员以及任何有兴趣利用 GC-O 分析复杂气味模式的人都会发现本综述是一个有价值的资源。本文强调了 GC-O 的潜力,并鼓励该领域的进一步研究和开发。