An Exploratory Study on the Rapid Detection of Volatile Organic Compounds in Gardenia Fruit Using the Heracles NEO Ultra-Fast Gas Phase Electronic Nose.

Metabolites

State Key Laboratory of Chinese Medicine Powder and Medicine Innovation in Hunan (Incubation), Science and Technology Innovation Center, Hunan University of Chinese Medicine, Changsha 410208, China.

Published: August 2024

AI Article Synopsis

  • Gardenia fruit is valued for its functional food properties and natural pigments, but many products share the same name, complicating identification.
  • A study utilized the Heracles NEO electronic nose to analyze VOCs in six different batches of gardenia fruit, revealing distinct odor profiles that aid in their rapid identification.
  • The analysis, which employed PCA and DFA, identified hexanal as a key differentiator among samples and grouped the fruits into two categories, offering insights for future quality control and identification methods.

Article Abstract

Gardenia fruit is a popular functional food and raw material for natural pigments. It comes from a wide range of sources, and different products sharing the same name are very common. Volatile organic compounds (VOCs) are important factors that affect the flavor and quality of gardenia fruit. This study used the Heracles NEO ultra-fast gas phase electronic nose with advanced odor analysis performance and high sensitivity to analyze six batches of gardenia fruit from different sources. This study analyzed the VOCs to find a way to quickly identify gardenia fruit. The results show that this method can accurately distinguish the odor characteristics of various gardenia fruit samples. The VOCs in gardenia fruit are mainly organic acid esters, ketones, and aldehyde compounds. By combining principal component analysis (PCA) and discriminant factor analysis (DFA), this study found that the hexanal content varied the most in different gardenia fruit samples. The VOCs allowed for the fruit samples to be grouped into two main categories. One fruit sample was quite different from the fruits of other origins. The results provide theoretical support for feasibility of rapid identification and quality control of gardenia fruit and related products in the future.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11356645PMC
http://dx.doi.org/10.3390/metabo14080445DOI Listing

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