Cargando…

Cardio-Protection of Salvianolic Acid B through Inhibition of Apoptosis Network

Targeting cellular function as a system rather than on the level of the single target significantly increases therapeutic potency. In the present study, we detect the target pathway of salvianolic acid B (SalB) in vivo. Acute myocardial infarction (AMI) was induced in rats followed by the treatment...

Descripción completa

Detalles Bibliográficos
Autores principales: Xu, Lingling, Deng, Yanping, Feng, Lixin, Li, Defang, Chen, Xiaoyan, Ma, Chao, Liu, Xuan, Yin, Jun, Yang, Min, Teng, Fukang, Wu, Wanying, Guan, Shuhong, Jiang, Baohong, Guo, Dean
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3167815/
https://www.ncbi.nlm.nih.gov/pubmed/21915278
http://dx.doi.org/10.1371/journal.pone.0024036
_version_ 1782211292089548800
author Xu, Lingling
Deng, Yanping
Feng, Lixin
Li, Defang
Chen, Xiaoyan
Ma, Chao
Liu, Xuan
Yin, Jun
Yang, Min
Teng, Fukang
Wu, Wanying
Guan, Shuhong
Jiang, Baohong
Guo, Dean
author_facet Xu, Lingling
Deng, Yanping
Feng, Lixin
Li, Defang
Chen, Xiaoyan
Ma, Chao
Liu, Xuan
Yin, Jun
Yang, Min
Teng, Fukang
Wu, Wanying
Guan, Shuhong
Jiang, Baohong
Guo, Dean
author_sort Xu, Lingling
collection PubMed
description Targeting cellular function as a system rather than on the level of the single target significantly increases therapeutic potency. In the present study, we detect the target pathway of salvianolic acid B (SalB) in vivo. Acute myocardial infarction (AMI) was induced in rats followed by the treatment with 10 mg/kg SalB. Hemodynamic detection and pathological stain, 2-dimensional electrophoresis, MALDI-TOF MS/MS, Western blot, pathway identification, apoptosis assay and transmission electron microscope were used to elucidate the effects and mechanism of SalB on cardioprotection. Higher SalB concentration was found in ischemic area compared to no-ischemic area of heart, correlating with improved heart function and histological structure. Thirty-three proteins regulated by SalB in AMI rats were identified by biochemical analysis and were classified as the components of metabolism and apoptosis networks. SalB protected cardiomyocytes from apoptosis, inhibited poly (ADP-ribose) polymerase-1 pathway, and improved the integrity of mitochondrial and nucleus of heart tissue during AMI. Furthermore, the protective effects of SalB against apoptosis were verified in H9c2 cells. Our results provide evidence that SalB regulates multi-targets involved in the apoptosis pathway during AMI and therefore may be a candidate for novel therapeutics of heart diseases.
format Online
Article
Text
id pubmed-3167815
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-31678152011-09-13 Cardio-Protection of Salvianolic Acid B through Inhibition of Apoptosis Network Xu, Lingling Deng, Yanping Feng, Lixin Li, Defang Chen, Xiaoyan Ma, Chao Liu, Xuan Yin, Jun Yang, Min Teng, Fukang Wu, Wanying Guan, Shuhong Jiang, Baohong Guo, Dean PLoS One Research Article Targeting cellular function as a system rather than on the level of the single target significantly increases therapeutic potency. In the present study, we detect the target pathway of salvianolic acid B (SalB) in vivo. Acute myocardial infarction (AMI) was induced in rats followed by the treatment with 10 mg/kg SalB. Hemodynamic detection and pathological stain, 2-dimensional electrophoresis, MALDI-TOF MS/MS, Western blot, pathway identification, apoptosis assay and transmission electron microscope were used to elucidate the effects and mechanism of SalB on cardioprotection. Higher SalB concentration was found in ischemic area compared to no-ischemic area of heart, correlating with improved heart function and histological structure. Thirty-three proteins regulated by SalB in AMI rats were identified by biochemical analysis and were classified as the components of metabolism and apoptosis networks. SalB protected cardiomyocytes from apoptosis, inhibited poly (ADP-ribose) polymerase-1 pathway, and improved the integrity of mitochondrial and nucleus of heart tissue during AMI. Furthermore, the protective effects of SalB against apoptosis were verified in H9c2 cells. Our results provide evidence that SalB regulates multi-targets involved in the apoptosis pathway during AMI and therefore may be a candidate for novel therapeutics of heart diseases. Public Library of Science 2011-09-06 /pmc/articles/PMC3167815/ /pubmed/21915278 http://dx.doi.org/10.1371/journal.pone.0024036 Text en Xu et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Xu, Lingling
Deng, Yanping
Feng, Lixin
Li, Defang
Chen, Xiaoyan
Ma, Chao
Liu, Xuan
Yin, Jun
Yang, Min
Teng, Fukang
Wu, Wanying
Guan, Shuhong
Jiang, Baohong
Guo, Dean
Cardio-Protection of Salvianolic Acid B through Inhibition of Apoptosis Network
title Cardio-Protection of Salvianolic Acid B through Inhibition of Apoptosis Network
title_full Cardio-Protection of Salvianolic Acid B through Inhibition of Apoptosis Network
title_fullStr Cardio-Protection of Salvianolic Acid B through Inhibition of Apoptosis Network
title_full_unstemmed Cardio-Protection of Salvianolic Acid B through Inhibition of Apoptosis Network
title_short Cardio-Protection of Salvianolic Acid B through Inhibition of Apoptosis Network
title_sort cardio-protection of salvianolic acid b through inhibition of apoptosis network
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3167815/
https://www.ncbi.nlm.nih.gov/pubmed/21915278
http://dx.doi.org/10.1371/journal.pone.0024036
work_keys_str_mv AT xulingling cardioprotectionofsalvianolicacidbthroughinhibitionofapoptosisnetwork
AT dengyanping cardioprotectionofsalvianolicacidbthroughinhibitionofapoptosisnetwork
AT fenglixin cardioprotectionofsalvianolicacidbthroughinhibitionofapoptosisnetwork
AT lidefang cardioprotectionofsalvianolicacidbthroughinhibitionofapoptosisnetwork
AT chenxiaoyan cardioprotectionofsalvianolicacidbthroughinhibitionofapoptosisnetwork
AT machao cardioprotectionofsalvianolicacidbthroughinhibitionofapoptosisnetwork
AT liuxuan cardioprotectionofsalvianolicacidbthroughinhibitionofapoptosisnetwork
AT yinjun cardioprotectionofsalvianolicacidbthroughinhibitionofapoptosisnetwork
AT yangmin cardioprotectionofsalvianolicacidbthroughinhibitionofapoptosisnetwork
AT tengfukang cardioprotectionofsalvianolicacidbthroughinhibitionofapoptosisnetwork
AT wuwanying cardioprotectionofsalvianolicacidbthroughinhibitionofapoptosisnetwork
AT guanshuhong cardioprotectionofsalvianolicacidbthroughinhibitionofapoptosisnetwork
AT jiangbaohong cardioprotectionofsalvianolicacidbthroughinhibitionofapoptosisnetwork
AT guodean cardioprotectionofsalvianolicacidbthroughinhibitionofapoptosisnetwork