Unknown

Dataset Information

0

Metabolites of Siamenoside I and Their Distributions in Rats.


ABSTRACT: Siamenoside I is the sweetest mogroside that has several kinds of bioactivities, and it is also a constituent of Siraitiae Fructus, a fruit and herb in China. Hitherto the metabolism of siamenoside I in human or animals remains unclear. To reveal its metabolic pathways, a high-performance liquid chromatography-electrospray ionization-ion trap-time of flight-multistage mass spectrometry (HPLC-ESI-IT-TOF-MS(n)) method was used to profile and identify its metabolites in rats. Altogether, 86 new metabolites were identified or tentatively identified, and 23 of them were also new metabolites of mogrosides. In rats, siamenoside I was found to undergo deglycosylation, hydroxylation, dehydrogenation, deoxygenation, isomerization, and glycosylation reactions. Among them, deoxygenation, pentahydroxylation, and didehydrogenation were novel metabolic reactions of mogrosides. The distributions of siamenoside I and its 86 metabolites in rat organs were firstly reported, and they were mainly distributed to intestine, stomach, kidney, and brain. The most widely distributed metabolite was mogroside IIIE. In addition, eight metabolites were bioactive according to literature. These findings would help to understand the metabolism and effective forms of siamenoside I and other mogrosides in vivo.

SUBMITTER: Yang XR 

PROVIDER: S-EPMC6274126 | biostudies-other | 2016 Jan

REPOSITORIES: biostudies-other

altmetric image

Publications

Metabolites of Siamenoside I and Their Distributions in Rats.

Yang Xue-Rong XR   Xu Feng F   Li Dian-Peng DP   Lu Feng-Lai FL   Liu Guang-Xue GX   Wang Lei L   Shang Ming-Ying MY   Huang Yong-Lin YL   Cai Shao-Qing SQ  

Molecules (Basel, Switzerland) 20160130 2


Siamenoside I is the sweetest mogroside that has several kinds of bioactivities, and it is also a constituent of Siraitiae Fructus, a fruit and herb in China. Hitherto the metabolism of siamenoside I in human or animals remains unclear. To reveal its metabolic pathways, a high-performance liquid chromatography-electrospray ionization-ion trap-time of flight-multistage mass spectrometry (HPLC-ESI-IT-TOF-MS(n)) method was used to profile and identify its metabolites in rats. Altogether, 86 new met  ...[more]