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pH‐Zone‐refining counter‐current chromatography for two new lipo‐alkaloids separated from refined alkaline extraction of Kusnezoff monkshood root

An efficient and refined method for the separation of six aconitine‐type alkaloids from the alkaline prepared “Kusnezoff monkshood root” was established. It is the first study that two new lipo‐alkaloids were successfully isolated from refined sample by pH‐zone‐refining counter‐current chromatograph...

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Autores principales: Zhao, Jiadi, Li, Peihe, Zheng, Zhong, Pi, Zifeng, Xu, Liang, Duan, Limei, Ao, Wuliji, Sun, Xiaowen, Liu, Zhiqiang, Liu, Jinghai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7318226/
https://www.ncbi.nlm.nih.gov/pubmed/32162842
http://dx.doi.org/10.1002/jssc.201901224
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author Zhao, Jiadi
Li, Peihe
Zheng, Zhong
Pi, Zifeng
Xu, Liang
Duan, Limei
Ao, Wuliji
Sun, Xiaowen
Liu, Zhiqiang
Liu, Jinghai
author_facet Zhao, Jiadi
Li, Peihe
Zheng, Zhong
Pi, Zifeng
Xu, Liang
Duan, Limei
Ao, Wuliji
Sun, Xiaowen
Liu, Zhiqiang
Liu, Jinghai
author_sort Zhao, Jiadi
collection PubMed
description An efficient and refined method for the separation of six aconitine‐type alkaloids from the alkaline prepared “Kusnezoff monkshood root” was established. It is the first study that two new lipo‐alkaloids were successfully isolated from refined sample by pH‐zone‐refining counter‐current chromatography rather than synthetic method. It was of interest that a great deal of lipo‐alkaloids was produced in crude extract from the alkalization of “Kusnezoff monkshood root.” A refined sample method was proposed to enrich two types of alkaloids by liquid–liquid extraction, i.e. lipo‐alkaloids and monoester‐diterpenoid alkaloids. The pH‐zone‐refining counter‐current chromatography was performed with an optimized two‐phase solvent system composed of n‐hexane‐ethyl acetate–methanol–water (3:5:4:5, v/v), where upper organic phase was added to 3 mmol/L triethylamine as a retainer and lower aqueous mobile phase was added to 3 mmol/L hydrochloric acid as an eluter. As a result, six aconitum alkaloids, including two lipo‐alkaloids (8‐lino‐14‐benzoylaconine, 8‐pal‐14‐benzoylaconine), three monoester‐diterpenoid alkaloids (14‐benzoylmesaconine, 14‐benzoylaconine, beyzoyldeoxyaconine), and one aconine alkaloid (neoline) were acquired from the plant at the same time. The anti‐inflammatory activities of the two new lipo‐alkaloids were compared to the six alkaloids in vitro, in cyclo‐oxygen‐ase‐2 inhibition assays. The separation mechanism of six alkaloids by pH‐zone‐refining counter‐current chromatography was illustrated.
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spelling pubmed-73182262020-06-29 pH‐Zone‐refining counter‐current chromatography for two new lipo‐alkaloids separated from refined alkaline extraction of Kusnezoff monkshood root Zhao, Jiadi Li, Peihe Zheng, Zhong Pi, Zifeng Xu, Liang Duan, Limei Ao, Wuliji Sun, Xiaowen Liu, Zhiqiang Liu, Jinghai J Sep Sci Other Techniques An efficient and refined method for the separation of six aconitine‐type alkaloids from the alkaline prepared “Kusnezoff monkshood root” was established. It is the first study that two new lipo‐alkaloids were successfully isolated from refined sample by pH‐zone‐refining counter‐current chromatography rather than synthetic method. It was of interest that a great deal of lipo‐alkaloids was produced in crude extract from the alkalization of “Kusnezoff monkshood root.” A refined sample method was proposed to enrich two types of alkaloids by liquid–liquid extraction, i.e. lipo‐alkaloids and monoester‐diterpenoid alkaloids. The pH‐zone‐refining counter‐current chromatography was performed with an optimized two‐phase solvent system composed of n‐hexane‐ethyl acetate–methanol–water (3:5:4:5, v/v), where upper organic phase was added to 3 mmol/L triethylamine as a retainer and lower aqueous mobile phase was added to 3 mmol/L hydrochloric acid as an eluter. As a result, six aconitum alkaloids, including two lipo‐alkaloids (8‐lino‐14‐benzoylaconine, 8‐pal‐14‐benzoylaconine), three monoester‐diterpenoid alkaloids (14‐benzoylmesaconine, 14‐benzoylaconine, beyzoyldeoxyaconine), and one aconine alkaloid (neoline) were acquired from the plant at the same time. The anti‐inflammatory activities of the two new lipo‐alkaloids were compared to the six alkaloids in vitro, in cyclo‐oxygen‐ase‐2 inhibition assays. The separation mechanism of six alkaloids by pH‐zone‐refining counter‐current chromatography was illustrated. John Wiley and Sons Inc. 2020-04-08 2020-06 /pmc/articles/PMC7318226/ /pubmed/32162842 http://dx.doi.org/10.1002/jssc.201901224 Text en © 2020 The Authors. Journal of Separation Science published by Wiley‐VCH Verlag GmbH & Co. KGaA, Weinheim. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Other Techniques
Zhao, Jiadi
Li, Peihe
Zheng, Zhong
Pi, Zifeng
Xu, Liang
Duan, Limei
Ao, Wuliji
Sun, Xiaowen
Liu, Zhiqiang
Liu, Jinghai
pH‐Zone‐refining counter‐current chromatography for two new lipo‐alkaloids separated from refined alkaline extraction of Kusnezoff monkshood root
title pH‐Zone‐refining counter‐current chromatography for two new lipo‐alkaloids separated from refined alkaline extraction of Kusnezoff monkshood root
title_full pH‐Zone‐refining counter‐current chromatography for two new lipo‐alkaloids separated from refined alkaline extraction of Kusnezoff monkshood root
title_fullStr pH‐Zone‐refining counter‐current chromatography for two new lipo‐alkaloids separated from refined alkaline extraction of Kusnezoff monkshood root
title_full_unstemmed pH‐Zone‐refining counter‐current chromatography for two new lipo‐alkaloids separated from refined alkaline extraction of Kusnezoff monkshood root
title_short pH‐Zone‐refining counter‐current chromatography for two new lipo‐alkaloids separated from refined alkaline extraction of Kusnezoff monkshood root
title_sort ph‐zone‐refining counter‐current chromatography for two new lipo‐alkaloids separated from refined alkaline extraction of kusnezoff monkshood root
topic Other Techniques
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7318226/
https://www.ncbi.nlm.nih.gov/pubmed/32162842
http://dx.doi.org/10.1002/jssc.201901224
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