Cargando…

A computational and functional study elicits the ameliorating effect of the Chinese herbal formula Huo Luo Xiao Ling Dan on experimental ischemia-induced myocardial injury in rats via inhibition of apoptosis

Ischemic heart disease (IHD) is the leading cause of death worldwide and remains a major life-threatening factor in humans. Apoptosis has been implicated in the pathogenesis of IHD. The Chinese herbal formula Huo Luo Xiao Ling Dan (HLXLD), one of the commonly used Chinese herbal formulas, consists o...

Descripción completa

Detalles Bibliográficos
Autores principales: Han, Xiang-Dong, Zhou, Zhi-Wei, Yang, Wei, Ye, Hang-Cheng, Xu, Ying-Zi, Huang, Yun-Feng, Zhang, Tong, Zhou, Shu-Feng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4342182/
https://www.ncbi.nlm.nih.gov/pubmed/25733819
http://dx.doi.org/10.2147/DDDT.S76336
_version_ 1782359248148103168
author Han, Xiang-Dong
Zhou, Zhi-Wei
Yang, Wei
Ye, Hang-Cheng
Xu, Ying-Zi
Huang, Yun-Feng
Zhang, Tong
Zhou, Shu-Feng
author_facet Han, Xiang-Dong
Zhou, Zhi-Wei
Yang, Wei
Ye, Hang-Cheng
Xu, Ying-Zi
Huang, Yun-Feng
Zhang, Tong
Zhou, Shu-Feng
author_sort Han, Xiang-Dong
collection PubMed
description Ischemic heart disease (IHD) is the leading cause of death worldwide and remains a major life-threatening factor in humans. Apoptosis has been implicated in the pathogenesis of IHD. The Chinese herbal formula Huo Luo Xiao Ling Dan (HLXLD), one of the commonly used Chinese herbal formulas, consists of Salviae miltiorrhizae, Angelica sinensis, Gummi olibanum, and Commiphora myrrha, with a wide spectrum of pharmacological activity. However, the mechanism of action and molecular targets of HLXLD in the treatment of IHD are unclear. This study aimed to computationally predict the molecular interactions between the major active components of HLXLD and key regulators of apoptosis and then examine the effect of HLXLD on coronary artery ligation-induced acute myocardial ischemia in rats. The molecular interactions between the major active components of HLXLD, including ferulic acid, ligustilide, succinic acid, vanillic acid, tanshinone IIA, tanshinone IIB, danshensu, salvianolic acid A, salvianolic acid C, protocatechuic aldehyde, and β-boswellic acid and human protein molecules including B cell lymphoma-extra large (Bcl-xl), B cell lymphoma 2 antagonist/killer 1 (Bak1), B cell lymphoma 2 (Bcl-2), procaspase 3, and caspase 9 with regard to hydrogen bond formation, charge interaction, and π-π stacking using Discovery Studio(®) program 3.1. The 12 HLXLD components were predicted by ADMET (absorption, distribution, metabolism, excretion and toxicity) Predictor to have favorable pharmacokinetic and low hepatotoxicity profiles. The acute myocardial ischemia was established by surgical ligation of the left anterior descending coronary artery. The rats were divided into a sham operative group, a model group, a positive control group treated with 0.2 mg/kg isosorbide mononitrate, and groups treated with 2.7, 5.4, or 10.8 g/kg HLXLD. The results showed that administration of HLXLD increased mean arterial pressure, left ventricular systolic pressure, heart rate, and maximal rate of rise/descent of left ventricular pressure levels. Administration of HLXLD significantly ameliorated coronary artery ligation-induced tissue damage in the left ventricle, with restored arrangement of myocardial fibers and recovered myoplasm in rats. Furthermore, HLXLD markedly increased the expression level of Bcl-2 but decreased the level of cleaved caspase 3. Taken together, administration of HLXLD attenuated acute myocardial ischemia-induced damage in cardiomyocytes and inhibited apoptotic death of cardiomyocytes, thereby exerting a cardioprotective effect in rats with IHD. These findings suggest that HLXLD may represent a promising herbal formula for the treatment of cardiovascular disease by counteracting apoptotic cell death via multiple active compounds. More studies are warranted to fully elucidate the mechanisms of action, identify the therapeutic targets, and validate the efficacy and safety of HLXLD in the treatment of IHD.
format Online
Article
Text
id pubmed-4342182
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Dove Medical Press
record_format MEDLINE/PubMed
spelling pubmed-43421822015-03-02 A computational and functional study elicits the ameliorating effect of the Chinese herbal formula Huo Luo Xiao Ling Dan on experimental ischemia-induced myocardial injury in rats via inhibition of apoptosis Han, Xiang-Dong Zhou, Zhi-Wei Yang, Wei Ye, Hang-Cheng Xu, Ying-Zi Huang, Yun-Feng Zhang, Tong Zhou, Shu-Feng Drug Des Devel Ther Original Research Ischemic heart disease (IHD) is the leading cause of death worldwide and remains a major life-threatening factor in humans. Apoptosis has been implicated in the pathogenesis of IHD. The Chinese herbal formula Huo Luo Xiao Ling Dan (HLXLD), one of the commonly used Chinese herbal formulas, consists of Salviae miltiorrhizae, Angelica sinensis, Gummi olibanum, and Commiphora myrrha, with a wide spectrum of pharmacological activity. However, the mechanism of action and molecular targets of HLXLD in the treatment of IHD are unclear. This study aimed to computationally predict the molecular interactions between the major active components of HLXLD and key regulators of apoptosis and then examine the effect of HLXLD on coronary artery ligation-induced acute myocardial ischemia in rats. The molecular interactions between the major active components of HLXLD, including ferulic acid, ligustilide, succinic acid, vanillic acid, tanshinone IIA, tanshinone IIB, danshensu, salvianolic acid A, salvianolic acid C, protocatechuic aldehyde, and β-boswellic acid and human protein molecules including B cell lymphoma-extra large (Bcl-xl), B cell lymphoma 2 antagonist/killer 1 (Bak1), B cell lymphoma 2 (Bcl-2), procaspase 3, and caspase 9 with regard to hydrogen bond formation, charge interaction, and π-π stacking using Discovery Studio(®) program 3.1. The 12 HLXLD components were predicted by ADMET (absorption, distribution, metabolism, excretion and toxicity) Predictor to have favorable pharmacokinetic and low hepatotoxicity profiles. The acute myocardial ischemia was established by surgical ligation of the left anterior descending coronary artery. The rats were divided into a sham operative group, a model group, a positive control group treated with 0.2 mg/kg isosorbide mononitrate, and groups treated with 2.7, 5.4, or 10.8 g/kg HLXLD. The results showed that administration of HLXLD increased mean arterial pressure, left ventricular systolic pressure, heart rate, and maximal rate of rise/descent of left ventricular pressure levels. Administration of HLXLD significantly ameliorated coronary artery ligation-induced tissue damage in the left ventricle, with restored arrangement of myocardial fibers and recovered myoplasm in rats. Furthermore, HLXLD markedly increased the expression level of Bcl-2 but decreased the level of cleaved caspase 3. Taken together, administration of HLXLD attenuated acute myocardial ischemia-induced damage in cardiomyocytes and inhibited apoptotic death of cardiomyocytes, thereby exerting a cardioprotective effect in rats with IHD. These findings suggest that HLXLD may represent a promising herbal formula for the treatment of cardiovascular disease by counteracting apoptotic cell death via multiple active compounds. More studies are warranted to fully elucidate the mechanisms of action, identify the therapeutic targets, and validate the efficacy and safety of HLXLD in the treatment of IHD. Dove Medical Press 2015-02-18 /pmc/articles/PMC4342182/ /pubmed/25733819 http://dx.doi.org/10.2147/DDDT.S76336 Text en © 2015 Han et al. This work is published by Dove Medical Press Limited, and licensed under Creative Commons Attribution – Non Commercial (unported, v3.0) License The full terms of the License are available at http://creativecommons.org/licenses/by-nc/3.0/. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Limited, provided the work is properly attributed.
spellingShingle Original Research
Han, Xiang-Dong
Zhou, Zhi-Wei
Yang, Wei
Ye, Hang-Cheng
Xu, Ying-Zi
Huang, Yun-Feng
Zhang, Tong
Zhou, Shu-Feng
A computational and functional study elicits the ameliorating effect of the Chinese herbal formula Huo Luo Xiao Ling Dan on experimental ischemia-induced myocardial injury in rats via inhibition of apoptosis
title A computational and functional study elicits the ameliorating effect of the Chinese herbal formula Huo Luo Xiao Ling Dan on experimental ischemia-induced myocardial injury in rats via inhibition of apoptosis
title_full A computational and functional study elicits the ameliorating effect of the Chinese herbal formula Huo Luo Xiao Ling Dan on experimental ischemia-induced myocardial injury in rats via inhibition of apoptosis
title_fullStr A computational and functional study elicits the ameliorating effect of the Chinese herbal formula Huo Luo Xiao Ling Dan on experimental ischemia-induced myocardial injury in rats via inhibition of apoptosis
title_full_unstemmed A computational and functional study elicits the ameliorating effect of the Chinese herbal formula Huo Luo Xiao Ling Dan on experimental ischemia-induced myocardial injury in rats via inhibition of apoptosis
title_short A computational and functional study elicits the ameliorating effect of the Chinese herbal formula Huo Luo Xiao Ling Dan on experimental ischemia-induced myocardial injury in rats via inhibition of apoptosis
title_sort computational and functional study elicits the ameliorating effect of the chinese herbal formula huo luo xiao ling dan on experimental ischemia-induced myocardial injury in rats via inhibition of apoptosis
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4342182/
https://www.ncbi.nlm.nih.gov/pubmed/25733819
http://dx.doi.org/10.2147/DDDT.S76336
work_keys_str_mv AT hanxiangdong acomputationalandfunctionalstudyelicitstheamelioratingeffectofthechineseherbalformulahuoluoxiaolingdanonexperimentalischemiainducedmyocardialinjuryinratsviainhibitionofapoptosis
AT zhouzhiwei acomputationalandfunctionalstudyelicitstheamelioratingeffectofthechineseherbalformulahuoluoxiaolingdanonexperimentalischemiainducedmyocardialinjuryinratsviainhibitionofapoptosis
AT yangwei acomputationalandfunctionalstudyelicitstheamelioratingeffectofthechineseherbalformulahuoluoxiaolingdanonexperimentalischemiainducedmyocardialinjuryinratsviainhibitionofapoptosis
AT yehangcheng acomputationalandfunctionalstudyelicitstheamelioratingeffectofthechineseherbalformulahuoluoxiaolingdanonexperimentalischemiainducedmyocardialinjuryinratsviainhibitionofapoptosis
AT xuyingzi acomputationalandfunctionalstudyelicitstheamelioratingeffectofthechineseherbalformulahuoluoxiaolingdanonexperimentalischemiainducedmyocardialinjuryinratsviainhibitionofapoptosis
AT huangyunfeng acomputationalandfunctionalstudyelicitstheamelioratingeffectofthechineseherbalformulahuoluoxiaolingdanonexperimentalischemiainducedmyocardialinjuryinratsviainhibitionofapoptosis
AT zhangtong acomputationalandfunctionalstudyelicitstheamelioratingeffectofthechineseherbalformulahuoluoxiaolingdanonexperimentalischemiainducedmyocardialinjuryinratsviainhibitionofapoptosis
AT zhoushufeng acomputationalandfunctionalstudyelicitstheamelioratingeffectofthechineseherbalformulahuoluoxiaolingdanonexperimentalischemiainducedmyocardialinjuryinratsviainhibitionofapoptosis
AT hanxiangdong computationalandfunctionalstudyelicitstheamelioratingeffectofthechineseherbalformulahuoluoxiaolingdanonexperimentalischemiainducedmyocardialinjuryinratsviainhibitionofapoptosis
AT zhouzhiwei computationalandfunctionalstudyelicitstheamelioratingeffectofthechineseherbalformulahuoluoxiaolingdanonexperimentalischemiainducedmyocardialinjuryinratsviainhibitionofapoptosis
AT yangwei computationalandfunctionalstudyelicitstheamelioratingeffectofthechineseherbalformulahuoluoxiaolingdanonexperimentalischemiainducedmyocardialinjuryinratsviainhibitionofapoptosis
AT yehangcheng computationalandfunctionalstudyelicitstheamelioratingeffectofthechineseherbalformulahuoluoxiaolingdanonexperimentalischemiainducedmyocardialinjuryinratsviainhibitionofapoptosis
AT xuyingzi computationalandfunctionalstudyelicitstheamelioratingeffectofthechineseherbalformulahuoluoxiaolingdanonexperimentalischemiainducedmyocardialinjuryinratsviainhibitionofapoptosis
AT huangyunfeng computationalandfunctionalstudyelicitstheamelioratingeffectofthechineseherbalformulahuoluoxiaolingdanonexperimentalischemiainducedmyocardialinjuryinratsviainhibitionofapoptosis
AT zhangtong computationalandfunctionalstudyelicitstheamelioratingeffectofthechineseherbalformulahuoluoxiaolingdanonexperimentalischemiainducedmyocardialinjuryinratsviainhibitionofapoptosis
AT zhoushufeng computationalandfunctionalstudyelicitstheamelioratingeffectofthechineseherbalformulahuoluoxiaolingdanonexperimentalischemiainducedmyocardialinjuryinratsviainhibitionofapoptosis