Literature DB >> 22431459

Characteristic ion clusters as determinants for the identification of pyrrolizidine alkaloid N-oxides in pyrrolizidine alkaloid-containing natural products using HPLC-MS analysis.

Jianqing Ruan1, Na Li, Qingsu Xia, Peter P Fu, Shuying Peng, Yang Ye, Ge Lin.   

Abstract

Pyrrolizidine alkaloid (PA)-containing plants are widely distributed in the world. PAs are hepatotoxic, affecting livestock and humans. PA N-oxides are often present together with PAs in plants and also exhibit hepatotoxicity but with less potency. HPLC-MS is generally used to analyze PA-containing herbs, although PA references are unavailable in most cases. However, to date, without reference standards, HPLC-MS methodology cannot distinguish PA N-oxides from PAs because they both produce the same characteristic ions in mass spectra. In the present study, the mass spectra of 10 PA N-oxides and the corresponding PAs were systemically investigated using HPLC-MS to define the characteristic mass fragment ions specific to PAs and PA N-oxides. Mass spectra of toxic retronecine-type PA N-oxides exhibited two characteristic ion clusters at m/z 118-120 and 136-138. These ion clusters were produced by three unique fragmentation pathways of PA N-oxides and were not found in their corresponding PAs. Similarly, the nontoxic platynecine-type PA N-oxides also fragmented via three similar pathways to form two characteristic ion clusters at m/z 120-122 and 138-140. Further application of using these characteristic ion clusters allowed successful and rapid identification of PAs and PA N-oxides in two PA-containing herbal plants. Our results demonstrated, for the first time, that these characteristic ion clusters are unique determinants to discriminate PA N-oxides from PAs even without the availability of reference samples. Our findings provide a novel and specific method to differentiate PA N-oxides from PAs in PA-containing natural products, which is crucial for the assessment of their intoxication.
Copyright © 2012 John Wiley & Sons, Ltd.

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Year:  2012        PMID: 22431459     DOI: 10.1002/jms.2969

Source DB:  PubMed          Journal:  J Mass Spectrom        ISSN: 1076-5174            Impact factor:   1.982


  3 in total

1.  Phosphocreatine attenuates Gynura segetum-induced hepatocyte apoptosis via a SIRT3-SOD2-mitochondrial reactive oxygen species pathway.

Authors:  Dong-Ping Li; Ying-Ling Chen; Hong-Yue Jiang; Yun Chen; Xiao-Qing Zeng; Li-Li Xu; Yang Ye; Chang-Qiang Ke; Ge Lin; Ji-Yao Wang; Hong Gao
Journal:  Drug Des Devel Ther       Date:  2019-06-27       Impact factor: 4.162

2.  Pyrrolizidine Alkaloid-Induced Hepatotoxicity Associated with the Formation of Reactive Metabolite-Derived Pyrrole-Protein Adducts.

Authors:  Jiang Ma; Mi Li; Na Li; Wood Yee Chan; Ge Lin
Journal:  Toxins (Basel)       Date:  2021-10-13       Impact factor: 4.546

3.  Pyrrolizidine alkaloid-derived DNA adducts are common toxicological biomarkers of pyrrolizidine alkaloid N-oxides.

Authors:  Xiaobo He; Qingsu Xia; Kellie Woodling; Ge Lin; Peter P Fu
Journal:  J Food Drug Anal       Date:  2017-09-19       Impact factor: 6.157

  3 in total

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