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Separation and Bioactive Assay of 25R/S-Spirostanol Saponin Diastereomers from Yucca schidigera Roezl (Mojave) Stems

In order to find a simple, generic, efficient separation method for 25R/S-spirostanol saponin diastereomers, the liquid chromatographic retention behaviors of C(12) carbonylation and C(12) unsubstituted 25R/S-spirostanol saponin diastereomers on different stationary phases (C(8), C(18), C(30) column...

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Detalles Bibliográficos
Autores principales: Qu, Lu, Ruan, Jingya, Wu, Song, Huang, Peijian, Yan, Jiejing, Yu, Haiyang, Zhang, Yi, Wang, Tao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6222657/
https://www.ncbi.nlm.nih.gov/pubmed/30297623
http://dx.doi.org/10.3390/molecules23102562
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author Qu, Lu
Ruan, Jingya
Wu, Song
Huang, Peijian
Yan, Jiejing
Yu, Haiyang
Zhang, Yi
Wang, Tao
author_facet Qu, Lu
Ruan, Jingya
Wu, Song
Huang, Peijian
Yan, Jiejing
Yu, Haiyang
Zhang, Yi
Wang, Tao
author_sort Qu, Lu
collection PubMed
description In order to find a simple, generic, efficient separation method for 25R/S-spirostanol saponin diastereomers, the liquid chromatographic retention behaviors of C(12) carbonylation and C(12) unsubstituted 25R/S-spirostanol saponin diastereomers on different stationary phases (C(8), C(18), C(30) columns) and different mobile phases (MeOH-1% CH(3)COOH and CH(3)CN-1% CH(3)COOH) were investigated. A C(30) column was firstly found to offer the highest efficiency for the separation of this kind of diastereomers than C(8) and C(18) columns. Meanwhile, the analysis results indicated that both CH(3)CN-1% CH(3)COOH and MeOH-1% CH(3)COOH eluate systems were selective for C(12) unsubstituted 25R/S-spirostanol saponin diastereomers, while MeOH-1% CH(3)COOH possessed better selectivity for C(12) carbonylation ones. Using the abovementioned analysis method, six pairs of 25R/S-spirostanol saponin diastereomers 1a–6a and 1b–6b from Yucca schidigera Roezl (Mojave) were isolated successfully by using HPLC on C(30) column for the first time. Among them, three pairs were new ones, named as (25R)-Yucca spirostanoside E(1) (1a), (25S)-Yucca spirostanoside E(1) (1b), (25R)-Yucca spirostanoside E(2) (2a), (25S)-Yucca spirostanoside E(2) (2b), (25R)-Yucca spirostanoside E(3) (3a), (25S)-Yucca spirostanoside E(3) (3b), respectively. Moreover, 3a, 5a, 6a, 3b–6b showed strong inhibitory activities on the growth of SW620 cell lines with the IC(50) values of 12.02–69.17 μM.
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spelling pubmed-62226572018-11-13 Separation and Bioactive Assay of 25R/S-Spirostanol Saponin Diastereomers from Yucca schidigera Roezl (Mojave) Stems Qu, Lu Ruan, Jingya Wu, Song Huang, Peijian Yan, Jiejing Yu, Haiyang Zhang, Yi Wang, Tao Molecules Article In order to find a simple, generic, efficient separation method for 25R/S-spirostanol saponin diastereomers, the liquid chromatographic retention behaviors of C(12) carbonylation and C(12) unsubstituted 25R/S-spirostanol saponin diastereomers on different stationary phases (C(8), C(18), C(30) columns) and different mobile phases (MeOH-1% CH(3)COOH and CH(3)CN-1% CH(3)COOH) were investigated. A C(30) column was firstly found to offer the highest efficiency for the separation of this kind of diastereomers than C(8) and C(18) columns. Meanwhile, the analysis results indicated that both CH(3)CN-1% CH(3)COOH and MeOH-1% CH(3)COOH eluate systems were selective for C(12) unsubstituted 25R/S-spirostanol saponin diastereomers, while MeOH-1% CH(3)COOH possessed better selectivity for C(12) carbonylation ones. Using the abovementioned analysis method, six pairs of 25R/S-spirostanol saponin diastereomers 1a–6a and 1b–6b from Yucca schidigera Roezl (Mojave) were isolated successfully by using HPLC on C(30) column for the first time. Among them, three pairs were new ones, named as (25R)-Yucca spirostanoside E(1) (1a), (25S)-Yucca spirostanoside E(1) (1b), (25R)-Yucca spirostanoside E(2) (2a), (25S)-Yucca spirostanoside E(2) (2b), (25R)-Yucca spirostanoside E(3) (3a), (25S)-Yucca spirostanoside E(3) (3b), respectively. Moreover, 3a, 5a, 6a, 3b–6b showed strong inhibitory activities on the growth of SW620 cell lines with the IC(50) values of 12.02–69.17 μM. MDPI 2018-10-08 /pmc/articles/PMC6222657/ /pubmed/30297623 http://dx.doi.org/10.3390/molecules23102562 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Qu, Lu
Ruan, Jingya
Wu, Song
Huang, Peijian
Yan, Jiejing
Yu, Haiyang
Zhang, Yi
Wang, Tao
Separation and Bioactive Assay of 25R/S-Spirostanol Saponin Diastereomers from Yucca schidigera Roezl (Mojave) Stems
title Separation and Bioactive Assay of 25R/S-Spirostanol Saponin Diastereomers from Yucca schidigera Roezl (Mojave) Stems
title_full Separation and Bioactive Assay of 25R/S-Spirostanol Saponin Diastereomers from Yucca schidigera Roezl (Mojave) Stems
title_fullStr Separation and Bioactive Assay of 25R/S-Spirostanol Saponin Diastereomers from Yucca schidigera Roezl (Mojave) Stems
title_full_unstemmed Separation and Bioactive Assay of 25R/S-Spirostanol Saponin Diastereomers from Yucca schidigera Roezl (Mojave) Stems
title_short Separation and Bioactive Assay of 25R/S-Spirostanol Saponin Diastereomers from Yucca schidigera Roezl (Mojave) Stems
title_sort separation and bioactive assay of 25r/s-spirostanol saponin diastereomers from yucca schidigera roezl (mojave) stems
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6222657/
https://www.ncbi.nlm.nih.gov/pubmed/30297623
http://dx.doi.org/10.3390/molecules23102562
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