Simultaneous Determination of Night Effective Constituents and Correlation Analysis of Multiconstituents and Antiplatelet Aggregation Bioactivity In Vitro in Chuanxiong Rhizoma Subjected to Different Decoction Times

Several effective constituents, such as vanillin, ferulic acid, senkyunolide I, senkyunolide H, coniferyl ferulate, Z-ligustilide, butylphthalide, senkyunolide A, and levistilide A, are unstable and possess mutual transformation relationships in Chuanxiong Rhizoma (CR). Traditional Chinese medicine...

Full description

Saved in:
Bibliographic Details
Main Authors: Peihua Zhang, Linming Chen, Xiaoxiao Wang, Jinpei Chen, Shungui Xu, Ling Ye, Yixin Yao
Format: Article
Language:English
Published: Wiley 2019-01-01
Series:Journal of Analytical Methods in Chemistry
Online Access:http://dx.doi.org/10.1155/2019/8970624
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1832558327309008896
author Peihua Zhang
Linming Chen
Xiaoxiao Wang
Jinpei Chen
Shungui Xu
Ling Ye
Yixin Yao
author_facet Peihua Zhang
Linming Chen
Xiaoxiao Wang
Jinpei Chen
Shungui Xu
Ling Ye
Yixin Yao
author_sort Peihua Zhang
collection DOAJ
description Several effective constituents, such as vanillin, ferulic acid, senkyunolide I, senkyunolide H, coniferyl ferulate, Z-ligustilide, butylphthalide, senkyunolide A, and levistilide A, are unstable and possess mutual transformation relationships in Chuanxiong Rhizoma (CR). Traditional Chinese medicine mainly involves decoction, and the content of effective constituents and antiplatelet aggregation bioactivity (AAB) in CR may vary with different decoction time (10 min, 20 min, 30 min, 40 min, 50 min, and 60 min). Here, we showed that coniferyl ferulate and levistilide A were detected in CR material, but not in the decoction. The effective components possessed transformation and degradation in CR decoction of different times. The effective components and the strength of AAB at 10 and 20 minutes were the strongest, followed by 30–50 minutes, and 60 minutes were the weakest by analysis of SIMCA-PLS in CR decoction of different times. In the Pearson correlation analysis, there were correlations (P<0.05) between effective components, which were ferulic acid and senkyunolide I (coefficient was 0.976), ferulic acid and senkyunolide H (coefficient was 0.972), senkyunolide I and senkyunolide H (coefficient was 0.982), senkyunolide A and butylphthalide (coefficient was 0.974), senkyunolide A and Z-ligustilide (coefficient was 0.947), and butylphthalide and Z-ligustilide (coefficient was 0.993). Effective components (ferulic acid, senkyunolide I, and senkyunolide H) and AAB were correlated and the Pearson correlation coefficients were respectively 0.965, 0.973, and 0.999. In the stepwise regression analysis, senkyunolide H and senkyunolide I were correlated with AAB (P<0.05). Senkyunolide H (H) was positively correlated with AAB, senkyunolide I (I) was negatively correlated with AAB, and its expression was AAB = 1.187 ∗ H − 0.199 ∗ I − 0.422. These findings indicate that there are some correlations between effective components and AAB in CR.
format Article
id doaj-art-89c328d1382c4486a49702b1b6a6e617
institution Kabale University
issn 2090-8865
2090-8873
language English
publishDate 2019-01-01
publisher Wiley
record_format Article
series Journal of Analytical Methods in Chemistry
spelling doaj-art-89c328d1382c4486a49702b1b6a6e6172025-02-03T01:32:38ZengWileyJournal of Analytical Methods in Chemistry2090-88652090-88732019-01-01201910.1155/2019/89706248970624Simultaneous Determination of Night Effective Constituents and Correlation Analysis of Multiconstituents and Antiplatelet Aggregation Bioactivity In Vitro in Chuanxiong Rhizoma Subjected to Different Decoction TimesPeihua Zhang0Linming Chen1Xiaoxiao Wang2Jinpei Chen3Shungui Xu4Ling Ye5Yixin Yao6The Affiliated People’s Hospital of Fujian University of Traditional Chinese Medicine, Fuzhou 350122, ChinaKangmei Pharmaceutical Co., Ltd., Puning 515300, ChinaDeyang Food and Drug Safety Inspection and Testing Center, Deyang 61800, ChinaThe Affiliated People’s Hospital of Fujian University of Traditional Chinese Medicine, Fuzhou 350122, ChinaThe Affiliated People’s Hospital of Fujian University of Traditional Chinese Medicine, Fuzhou 350122, ChinaThe Affiliated People’s Hospital of Fujian University of Traditional Chinese Medicine, Fuzhou 350122, ChinaKangmei Pharmaceutical Co., Ltd., Puning 515300, ChinaSeveral effective constituents, such as vanillin, ferulic acid, senkyunolide I, senkyunolide H, coniferyl ferulate, Z-ligustilide, butylphthalide, senkyunolide A, and levistilide A, are unstable and possess mutual transformation relationships in Chuanxiong Rhizoma (CR). Traditional Chinese medicine mainly involves decoction, and the content of effective constituents and antiplatelet aggregation bioactivity (AAB) in CR may vary with different decoction time (10 min, 20 min, 30 min, 40 min, 50 min, and 60 min). Here, we showed that coniferyl ferulate and levistilide A were detected in CR material, but not in the decoction. The effective components possessed transformation and degradation in CR decoction of different times. The effective components and the strength of AAB at 10 and 20 minutes were the strongest, followed by 30–50 minutes, and 60 minutes were the weakest by analysis of SIMCA-PLS in CR decoction of different times. In the Pearson correlation analysis, there were correlations (P<0.05) between effective components, which were ferulic acid and senkyunolide I (coefficient was 0.976), ferulic acid and senkyunolide H (coefficient was 0.972), senkyunolide I and senkyunolide H (coefficient was 0.982), senkyunolide A and butylphthalide (coefficient was 0.974), senkyunolide A and Z-ligustilide (coefficient was 0.947), and butylphthalide and Z-ligustilide (coefficient was 0.993). Effective components (ferulic acid, senkyunolide I, and senkyunolide H) and AAB were correlated and the Pearson correlation coefficients were respectively 0.965, 0.973, and 0.999. In the stepwise regression analysis, senkyunolide H and senkyunolide I were correlated with AAB (P<0.05). Senkyunolide H (H) was positively correlated with AAB, senkyunolide I (I) was negatively correlated with AAB, and its expression was AAB = 1.187 ∗ H − 0.199 ∗ I − 0.422. These findings indicate that there are some correlations between effective components and AAB in CR.http://dx.doi.org/10.1155/2019/8970624
spellingShingle Peihua Zhang
Linming Chen
Xiaoxiao Wang
Jinpei Chen
Shungui Xu
Ling Ye
Yixin Yao
Simultaneous Determination of Night Effective Constituents and Correlation Analysis of Multiconstituents and Antiplatelet Aggregation Bioactivity In Vitro in Chuanxiong Rhizoma Subjected to Different Decoction Times
Journal of Analytical Methods in Chemistry
title Simultaneous Determination of Night Effective Constituents and Correlation Analysis of Multiconstituents and Antiplatelet Aggregation Bioactivity In Vitro in Chuanxiong Rhizoma Subjected to Different Decoction Times
title_full Simultaneous Determination of Night Effective Constituents and Correlation Analysis of Multiconstituents and Antiplatelet Aggregation Bioactivity In Vitro in Chuanxiong Rhizoma Subjected to Different Decoction Times
title_fullStr Simultaneous Determination of Night Effective Constituents and Correlation Analysis of Multiconstituents and Antiplatelet Aggregation Bioactivity In Vitro in Chuanxiong Rhizoma Subjected to Different Decoction Times
title_full_unstemmed Simultaneous Determination of Night Effective Constituents and Correlation Analysis of Multiconstituents and Antiplatelet Aggregation Bioactivity In Vitro in Chuanxiong Rhizoma Subjected to Different Decoction Times
title_short Simultaneous Determination of Night Effective Constituents and Correlation Analysis of Multiconstituents and Antiplatelet Aggregation Bioactivity In Vitro in Chuanxiong Rhizoma Subjected to Different Decoction Times
title_sort simultaneous determination of night effective constituents and correlation analysis of multiconstituents and antiplatelet aggregation bioactivity in vitro in chuanxiong rhizoma subjected to different decoction times
url http://dx.doi.org/10.1155/2019/8970624
work_keys_str_mv AT peihuazhang simultaneousdeterminationofnighteffectiveconstituentsandcorrelationanalysisofmulticonstituentsandantiplateletaggregationbioactivityinvitroinchuanxiongrhizomasubjectedtodifferentdecoctiontimes
AT linmingchen simultaneousdeterminationofnighteffectiveconstituentsandcorrelationanalysisofmulticonstituentsandantiplateletaggregationbioactivityinvitroinchuanxiongrhizomasubjectedtodifferentdecoctiontimes
AT xiaoxiaowang simultaneousdeterminationofnighteffectiveconstituentsandcorrelationanalysisofmulticonstituentsandantiplateletaggregationbioactivityinvitroinchuanxiongrhizomasubjectedtodifferentdecoctiontimes
AT jinpeichen simultaneousdeterminationofnighteffectiveconstituentsandcorrelationanalysisofmulticonstituentsandantiplateletaggregationbioactivityinvitroinchuanxiongrhizomasubjectedtodifferentdecoctiontimes
AT shunguixu simultaneousdeterminationofnighteffectiveconstituentsandcorrelationanalysisofmulticonstituentsandantiplateletaggregationbioactivityinvitroinchuanxiongrhizomasubjectedtodifferentdecoctiontimes
AT lingye simultaneousdeterminationofnighteffectiveconstituentsandcorrelationanalysisofmulticonstituentsandantiplateletaggregationbioactivityinvitroinchuanxiongrhizomasubjectedtodifferentdecoctiontimes
AT yixinyao simultaneousdeterminationofnighteffectiveconstituentsandcorrelationanalysisofmulticonstituentsandantiplateletaggregationbioactivityinvitroinchuanxiongrhizomasubjectedtodifferentdecoctiontimes