Granule of BU-XIN RUAN-MAI Attenuates the Patients’ Angina Pectoris of Coronary Heart Disease via Regulating miR-542-3p/GABARAP Signaling

Objective. Coronary heart disease (CHD) has been regarded as a serious and common disease in the modern society. This study aims to investigate the effect of Granule of BU-XIN RUAN-MAI (BXRM) on angina pectoris of coronary heart disease and to explore the molecular mechanisms underlying Granule of B...

Full description

Bibliographic Details
Main Authors: Dong Yan, Li-li Zhao, Bo-wen Yue, Hui Qian, Zi-han Zhang, Ning Wang, Shi-hai Yan, Yu-liang Qian
Format: Article
Language:English
Published: Hindawi Limited 2019-01-01
Series:Evidence-Based Complementary and Alternative Medicine
Online Access:http://dx.doi.org/10.1155/2019/1808419
id doaj-957c0e7d3c824873aa0c484db06cccd4
record_format Article
collection DOAJ
language English
format Article
sources DOAJ
author Dong Yan
Li-li Zhao
Bo-wen Yue
Hui Qian
Zi-han Zhang
Ning Wang
Shi-hai Yan
Yu-liang Qian
spellingShingle Dong Yan
Li-li Zhao
Bo-wen Yue
Hui Qian
Zi-han Zhang
Ning Wang
Shi-hai Yan
Yu-liang Qian
Granule of BU-XIN RUAN-MAI Attenuates the Patients’ Angina Pectoris of Coronary Heart Disease via Regulating miR-542-3p/GABARAP Signaling
Evidence-Based Complementary and Alternative Medicine
author_facet Dong Yan
Li-li Zhao
Bo-wen Yue
Hui Qian
Zi-han Zhang
Ning Wang
Shi-hai Yan
Yu-liang Qian
author_sort Dong Yan
title Granule of BU-XIN RUAN-MAI Attenuates the Patients’ Angina Pectoris of Coronary Heart Disease via Regulating miR-542-3p/GABARAP Signaling
title_short Granule of BU-XIN RUAN-MAI Attenuates the Patients’ Angina Pectoris of Coronary Heart Disease via Regulating miR-542-3p/GABARAP Signaling
title_full Granule of BU-XIN RUAN-MAI Attenuates the Patients’ Angina Pectoris of Coronary Heart Disease via Regulating miR-542-3p/GABARAP Signaling
title_fullStr Granule of BU-XIN RUAN-MAI Attenuates the Patients’ Angina Pectoris of Coronary Heart Disease via Regulating miR-542-3p/GABARAP Signaling
title_full_unstemmed Granule of BU-XIN RUAN-MAI Attenuates the Patients’ Angina Pectoris of Coronary Heart Disease via Regulating miR-542-3p/GABARAP Signaling
title_sort granule of bu-xin ruan-mai attenuates the patients’ angina pectoris of coronary heart disease via regulating mir-542-3p/gabarap signaling
publisher Hindawi Limited
series Evidence-Based Complementary and Alternative Medicine
issn 1741-427X
1741-4288
publishDate 2019-01-01
description Objective. Coronary heart disease (CHD) has been regarded as a serious and common disease in the modern society. This study aims to investigate the effect of Granule of BU-XIN RUAN-MAI (BXRM) on angina pectoris of coronary heart disease and to explore the molecular mechanisms underlying Granule of BU-XIN RUAN-MAI-mediated protective activity against this disease. Methods. The effects of Granule of BU-XIN RUAN-MAI on clinical symptoms of patients’ angina were indicated by hemorheology indicators including high shear of blood viscosity, low shear of blood viscosity, plasma viscosity, erythrocyte rigidity index, D-D dimer, fibrinogen content, and lipid content. The effects of Granule of BU-XIN RUAN-MAI on isoprenaline-induced myocardial cell injury were determined by conducting H&E staining and by performing ELISA to examine the serum content of MDA, SOD, Na+/K+-ATPase, cAMP, and the content of inflammatory factors in isoprenaline-induced rats. Meanwhile, western blot and real time PCR were used to determine the expression of genes involved in oxidation and energy metabolism, and real time PCR was also used for determination of miR-542-3p expression. Luciferase reporter assay was conducted to test the binding sites of miR-542-3p on GABARAP 3′UTR. The chemical compositions of Granule of BU-XIN RUAN-MAI were determined by liquid LC-QTOF-MS. Results. Granule of BU-XIN RUAN-MAI significantly attenuated the clinical symptoms of patients’ angina by improving the patients’ heart rate and by decreasing the level of hemorheology indicators and also by reducing the serum content of TC, TG, LDL, and elevated HDL content. H&E staining demonstrated that Granule of BU-XIN RUAN-MAI ameliorated the myocardial ischemia in a dose-dependent manner. Besides, Granule of BU-XIN RUAN-MAI downregulated serum MDA content and upregulated the content of SOD, Na+/K+-ATPase, and cAMP in isoprenaline-induced rats. Granule of BU-XIN RUAN-MAI significantly improved oxidation stress by increasing PPARα expression, and it inhibited inflammation by downregulating expression and contents of IL-6, IL-1β, and TNF-α. Then, Granule of BU-XIN RUAN-MAI-containing serum increased the SOD content, and reduced the MDA content in angiotensin II-stimulated HUVEC cells. The granule of BU-XIN RUAN-MAI-containing serum obviously downregulated protein expressions of P40phox, P47phox, and P67phox in plasma membrane, and it significantly increased protein levels of P40phox, P47phox, and P67phox in the cytoplasm of HUVEC cells. Furthermore, GABARAP was reduced in heart tissues of ISO-induced rats and in angiotensin II-stimulated cell lines, and GABARAP was required for the inhibitory activity of Granule of BU-XIN RUAN-MAI on oxidation and inflammation in vivo and in vivo. GABARAP could be upregulated by Granule of BU-XIN RUAN-MAI by inhibiting the expression of miR-542-3p, which may significantly enhance oxidation and inflammation by targeting GABARAP in cardiomyocytes. Moreover, the silencing of GABARAP could obviously reverse the granule of BU-XIN RUAN-MAI-mediated protective activity against coronary heart disease, and interfering GABARAP expression also could partly block the anti-miR-542-3p-controlled oxidation and inflammation in cardiomyocytes. Besides, salidroside, loganin, and polydatin were the main compounds of granules of BU-XIN RUAN-MAI. Conclusion. Granule of BU-XIN RUAN-MAI is an excellent prescription for treatment of coronary heart disease by suppressing inflammation and NAPDH-mediated oxidative stress. The miR-542-3p/GABARAP axis is required for Granule of BU-XIN RUAN-MAI, exhibiting its protective activity against the pectoris of coronary heart disease.
url http://dx.doi.org/10.1155/2019/1808419
work_keys_str_mv AT dongyan granuleofbuxinruanmaiattenuatesthepatientsanginapectorisofcoronaryheartdiseaseviaregulatingmir5423pgabarapsignaling
AT lilizhao granuleofbuxinruanmaiattenuatesthepatientsanginapectorisofcoronaryheartdiseaseviaregulatingmir5423pgabarapsignaling
AT bowenyue granuleofbuxinruanmaiattenuatesthepatientsanginapectorisofcoronaryheartdiseaseviaregulatingmir5423pgabarapsignaling
AT huiqian granuleofbuxinruanmaiattenuatesthepatientsanginapectorisofcoronaryheartdiseaseviaregulatingmir5423pgabarapsignaling
AT zihanzhang granuleofbuxinruanmaiattenuatesthepatientsanginapectorisofcoronaryheartdiseaseviaregulatingmir5423pgabarapsignaling
AT ningwang granuleofbuxinruanmaiattenuatesthepatientsanginapectorisofcoronaryheartdiseaseviaregulatingmir5423pgabarapsignaling
AT shihaiyan granuleofbuxinruanmaiattenuatesthepatientsanginapectorisofcoronaryheartdiseaseviaregulatingmir5423pgabarapsignaling
AT yuliangqian granuleofbuxinruanmaiattenuatesthepatientsanginapectorisofcoronaryheartdiseaseviaregulatingmir5423pgabarapsignaling
_version_ 1724986609059758080
spelling doaj-957c0e7d3c824873aa0c484db06cccd42020-11-25T01:54:34ZengHindawi LimitedEvidence-Based Complementary and Alternative Medicine1741-427X1741-42882019-01-01201910.1155/2019/18084191808419Granule of BU-XIN RUAN-MAI Attenuates the Patients’ Angina Pectoris of Coronary Heart Disease via Regulating miR-542-3p/GABARAP SignalingDong Yan0Li-li Zhao1Bo-wen Yue2Hui Qian3Zi-han Zhang4Ning Wang5Shi-hai Yan6Yu-liang Qian7Department of Pharmacology, Affiliated Hospital of Nanjing University of TCM, Nanjing, ChinaNanjing University of TCM, Nanjing, ChinaNanjing University of TCM, Nanjing, ChinaNanjing University of TCM, Nanjing, ChinaNanjing University of TCM, Nanjing, ChinaNanjing University of TCM, Nanjing, ChinaDepartment of Pharmacology, Affiliated Hospital of Nanjing University of TCM, Nanjing, ChinaDepartment of Pharmacology, Affiliated Hospital of Nanjing University of TCM, Nanjing, ChinaObjective. Coronary heart disease (CHD) has been regarded as a serious and common disease in the modern society. This study aims to investigate the effect of Granule of BU-XIN RUAN-MAI (BXRM) on angina pectoris of coronary heart disease and to explore the molecular mechanisms underlying Granule of BU-XIN RUAN-MAI-mediated protective activity against this disease. Methods. The effects of Granule of BU-XIN RUAN-MAI on clinical symptoms of patients’ angina were indicated by hemorheology indicators including high shear of blood viscosity, low shear of blood viscosity, plasma viscosity, erythrocyte rigidity index, D-D dimer, fibrinogen content, and lipid content. The effects of Granule of BU-XIN RUAN-MAI on isoprenaline-induced myocardial cell injury were determined by conducting H&E staining and by performing ELISA to examine the serum content of MDA, SOD, Na+/K+-ATPase, cAMP, and the content of inflammatory factors in isoprenaline-induced rats. Meanwhile, western blot and real time PCR were used to determine the expression of genes involved in oxidation and energy metabolism, and real time PCR was also used for determination of miR-542-3p expression. Luciferase reporter assay was conducted to test the binding sites of miR-542-3p on GABARAP 3′UTR. The chemical compositions of Granule of BU-XIN RUAN-MAI were determined by liquid LC-QTOF-MS. Results. Granule of BU-XIN RUAN-MAI significantly attenuated the clinical symptoms of patients’ angina by improving the patients’ heart rate and by decreasing the level of hemorheology indicators and also by reducing the serum content of TC, TG, LDL, and elevated HDL content. H&E staining demonstrated that Granule of BU-XIN RUAN-MAI ameliorated the myocardial ischemia in a dose-dependent manner. Besides, Granule of BU-XIN RUAN-MAI downregulated serum MDA content and upregulated the content of SOD, Na+/K+-ATPase, and cAMP in isoprenaline-induced rats. Granule of BU-XIN RUAN-MAI significantly improved oxidation stress by increasing PPARα expression, and it inhibited inflammation by downregulating expression and contents of IL-6, IL-1β, and TNF-α. Then, Granule of BU-XIN RUAN-MAI-containing serum increased the SOD content, and reduced the MDA content in angiotensin II-stimulated HUVEC cells. The granule of BU-XIN RUAN-MAI-containing serum obviously downregulated protein expressions of P40phox, P47phox, and P67phox in plasma membrane, and it significantly increased protein levels of P40phox, P47phox, and P67phox in the cytoplasm of HUVEC cells. Furthermore, GABARAP was reduced in heart tissues of ISO-induced rats and in angiotensin II-stimulated cell lines, and GABARAP was required for the inhibitory activity of Granule of BU-XIN RUAN-MAI on oxidation and inflammation in vivo and in vivo. GABARAP could be upregulated by Granule of BU-XIN RUAN-MAI by inhibiting the expression of miR-542-3p, which may significantly enhance oxidation and inflammation by targeting GABARAP in cardiomyocytes. Moreover, the silencing of GABARAP could obviously reverse the granule of BU-XIN RUAN-MAI-mediated protective activity against coronary heart disease, and interfering GABARAP expression also could partly block the anti-miR-542-3p-controlled oxidation and inflammation in cardiomyocytes. Besides, salidroside, loganin, and polydatin were the main compounds of granules of BU-XIN RUAN-MAI. Conclusion. Granule of BU-XIN RUAN-MAI is an excellent prescription for treatment of coronary heart disease by suppressing inflammation and NAPDH-mediated oxidative stress. The miR-542-3p/GABARAP axis is required for Granule of BU-XIN RUAN-MAI, exhibiting its protective activity against the pectoris of coronary heart disease.http://dx.doi.org/10.1155/2019/1808419