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Metabolomic profiling and comparison of major cinnamon species using UHPLC–HRMS
by
de B, Harrington Peter
, Wang, Yifei
, Chen, Pei
in
Acetic acid
/ Aldehydes
/ Alkaloids
/ Cinnamaldehyde
/ Cinnamon
/ Coumarin
/ Discriminant analysis
/ Glycosides
/ High-performance liquid chromatography
/ Liquid chromatography
/ Mass spectrometry
/ Mass spectroscopy
/ Metabolites
/ Metabolomics
/ Phenolic acids
/ Phenols
/ Principal components analysis
/ Proanthocyanidins
/ Species
/ Terpenes
2020
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Metabolomic profiling and comparison of major cinnamon species using UHPLC–HRMS
by
de B, Harrington Peter
, Wang, Yifei
, Chen, Pei
in
Acetic acid
/ Aldehydes
/ Alkaloids
/ Cinnamaldehyde
/ Cinnamon
/ Coumarin
/ Discriminant analysis
/ Glycosides
/ High-performance liquid chromatography
/ Liquid chromatography
/ Mass spectrometry
/ Mass spectroscopy
/ Metabolites
/ Metabolomics
/ Phenolic acids
/ Phenols
/ Principal components analysis
/ Proanthocyanidins
/ Species
/ Terpenes
2020
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Do you wish to request the book?
Metabolomic profiling and comparison of major cinnamon species using UHPLC–HRMS
by
de B, Harrington Peter
, Wang, Yifei
, Chen, Pei
in
Acetic acid
/ Aldehydes
/ Alkaloids
/ Cinnamaldehyde
/ Cinnamon
/ Coumarin
/ Discriminant analysis
/ Glycosides
/ High-performance liquid chromatography
/ Liquid chromatography
/ Mass spectrometry
/ Mass spectroscopy
/ Metabolites
/ Metabolomics
/ Phenolic acids
/ Phenols
/ Principal components analysis
/ Proanthocyanidins
/ Species
/ Terpenes
2020
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Metabolomic profiling and comparison of major cinnamon species using UHPLC–HRMS
Journal Article
Metabolomic profiling and comparison of major cinnamon species using UHPLC–HRMS
2020
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Overview
The metabolomic profiles of four major species of cinnamon (Cinnamomum verum, C. burmannii, C. loureiroi, and C. cassia) were investigated by ultra-high-performance liquid chromatography–high-resolution mass spectrometry (UHPLC–HRMS). Thirty-six metabolites were tentatively characterized, belonging to various compound groups such as phenolic glycosides, flavan-3-ols, phenolic acids, terpenes, alkaloids, and aldehydes. Principal component analysis (PCA) and partial least squares-discriminant analysis (PLS-DA) on the HRMS data matrix resulted in a clear separation of the four cinnamon species. Coumarin, cinnamaldehyde, methoxycinnamaldehyde, cinnamoyl-methoxyphenyl acetate, proanthocyanidins, and other components varied among the four species. Such variations were used to develop a step-by-step strategy for differentiating the four cinnamon species based on their levels of pre-selected components. This study suggests a significant variation in the phytochemical compositions of different cinnamon species, which have a direct influence on cinnamon’s health benefit potentials.
Publisher
Springer Nature B.V
Subject
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