Cargando…

Systematical Identification of the Protective Effect of Danhong Injection and BuChang NaoXinTong Capsules on Transcription Factors in Cerebral Ischemia Mice Brain

Cerebral ischemia has led to a high rate of both disability and mortality with massive healthcare costs. Although transcriptional regulation is typically mediated by different combinations of TFs, a combined regulatory unit to synergistically activate transcription has remained unclear in cerebral i...

Descripción completa

Detalles Bibliográficos
Autores principales: Xu, Jing, Wang, Tingting, Guo, Feifei, Ji, Enhui, Zhang, Yi, Wu, Hongwei, Tang, Shihuan, Wei, Junying, Yang, Hongjun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7755463/
https://www.ncbi.nlm.nih.gov/pubmed/33414894
http://dx.doi.org/10.1155/2020/5879852
_version_ 1783626353695784960
author Xu, Jing
Wang, Tingting
Guo, Feifei
Ji, Enhui
Zhang, Yi
Wu, Hongwei
Tang, Shihuan
Wei, Junying
Yang, Hongjun
author_facet Xu, Jing
Wang, Tingting
Guo, Feifei
Ji, Enhui
Zhang, Yi
Wu, Hongwei
Tang, Shihuan
Wei, Junying
Yang, Hongjun
author_sort Xu, Jing
collection PubMed
description Cerebral ischemia has led to a high rate of both disability and mortality with massive healthcare costs. Although transcriptional regulation is typically mediated by different combinations of TFs, a combined regulatory unit to synergistically activate transcription has remained unclear in cerebral ischemia, especially in different drug treatments. In this study, TFs alterations after 6 h cerebral ischemic injury and repair were performed by a concatenated tandem array of consensus transcription factor response elements (catTFREs), and vital TFs were obtained by TFs-target imbalanced network. Drug intervention used Danhong injection (DHI) and BNC (BuChang NaoXinTong Capsules), which has been widely prescribed in Chinese herb medicine for the treatment of cerebrovascular and cardiovascular diseases. There were 198 TFs identified after 6 h MCAO operation, and six TFs (Sox2, Smad3, FoxO1, Creb1, Egr,1 and Smad4) were considered as critical TFs in response to cerebral ischemia. Moreover, Smad3 was identified as a hub TF among six vital TFs, and the transcription activity of Smad3 was further verified. These 6 TFs were all reversed by DHI or BNC, indicating different medications may regulate different transcription factors through TF synergy. Moreover, validation results indicated that Smad3 was a putative target TF for DHI and BNC-mediated protection against cerebral ischemia. The observations of the present study provide a fresh understanding of biomolecules and possible new avenues for therapeutic interventions, in addition to the new intervention pattern for different treatments for ischemia stroke.
format Online
Article
Text
id pubmed-7755463
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Hindawi
record_format MEDLINE/PubMed
spelling pubmed-77554632021-01-06 Systematical Identification of the Protective Effect of Danhong Injection and BuChang NaoXinTong Capsules on Transcription Factors in Cerebral Ischemia Mice Brain Xu, Jing Wang, Tingting Guo, Feifei Ji, Enhui Zhang, Yi Wu, Hongwei Tang, Shihuan Wei, Junying Yang, Hongjun Oxid Med Cell Longev Research Article Cerebral ischemia has led to a high rate of both disability and mortality with massive healthcare costs. Although transcriptional regulation is typically mediated by different combinations of TFs, a combined regulatory unit to synergistically activate transcription has remained unclear in cerebral ischemia, especially in different drug treatments. In this study, TFs alterations after 6 h cerebral ischemic injury and repair were performed by a concatenated tandem array of consensus transcription factor response elements (catTFREs), and vital TFs were obtained by TFs-target imbalanced network. Drug intervention used Danhong injection (DHI) and BNC (BuChang NaoXinTong Capsules), which has been widely prescribed in Chinese herb medicine for the treatment of cerebrovascular and cardiovascular diseases. There were 198 TFs identified after 6 h MCAO operation, and six TFs (Sox2, Smad3, FoxO1, Creb1, Egr,1 and Smad4) were considered as critical TFs in response to cerebral ischemia. Moreover, Smad3 was identified as a hub TF among six vital TFs, and the transcription activity of Smad3 was further verified. These 6 TFs were all reversed by DHI or BNC, indicating different medications may regulate different transcription factors through TF synergy. Moreover, validation results indicated that Smad3 was a putative target TF for DHI and BNC-mediated protection against cerebral ischemia. The observations of the present study provide a fresh understanding of biomolecules and possible new avenues for therapeutic interventions, in addition to the new intervention pattern for different treatments for ischemia stroke. Hindawi 2020-12-14 /pmc/articles/PMC7755463/ /pubmed/33414894 http://dx.doi.org/10.1155/2020/5879852 Text en Copyright © 2020 Jing Xu et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Xu, Jing
Wang, Tingting
Guo, Feifei
Ji, Enhui
Zhang, Yi
Wu, Hongwei
Tang, Shihuan
Wei, Junying
Yang, Hongjun
Systematical Identification of the Protective Effect of Danhong Injection and BuChang NaoXinTong Capsules on Transcription Factors in Cerebral Ischemia Mice Brain
title Systematical Identification of the Protective Effect of Danhong Injection and BuChang NaoXinTong Capsules on Transcription Factors in Cerebral Ischemia Mice Brain
title_full Systematical Identification of the Protective Effect of Danhong Injection and BuChang NaoXinTong Capsules on Transcription Factors in Cerebral Ischemia Mice Brain
title_fullStr Systematical Identification of the Protective Effect of Danhong Injection and BuChang NaoXinTong Capsules on Transcription Factors in Cerebral Ischemia Mice Brain
title_full_unstemmed Systematical Identification of the Protective Effect of Danhong Injection and BuChang NaoXinTong Capsules on Transcription Factors in Cerebral Ischemia Mice Brain
title_short Systematical Identification of the Protective Effect of Danhong Injection and BuChang NaoXinTong Capsules on Transcription Factors in Cerebral Ischemia Mice Brain
title_sort systematical identification of the protective effect of danhong injection and buchang naoxintong capsules on transcription factors in cerebral ischemia mice brain
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7755463/
https://www.ncbi.nlm.nih.gov/pubmed/33414894
http://dx.doi.org/10.1155/2020/5879852
work_keys_str_mv AT xujing systematicalidentificationoftheprotectiveeffectofdanhonginjectionandbuchangnaoxintongcapsulesontranscriptionfactorsincerebralischemiamicebrain
AT wangtingting systematicalidentificationoftheprotectiveeffectofdanhonginjectionandbuchangnaoxintongcapsulesontranscriptionfactorsincerebralischemiamicebrain
AT guofeifei systematicalidentificationoftheprotectiveeffectofdanhonginjectionandbuchangnaoxintongcapsulesontranscriptionfactorsincerebralischemiamicebrain
AT jienhui systematicalidentificationoftheprotectiveeffectofdanhonginjectionandbuchangnaoxintongcapsulesontranscriptionfactorsincerebralischemiamicebrain
AT zhangyi systematicalidentificationoftheprotectiveeffectofdanhonginjectionandbuchangnaoxintongcapsulesontranscriptionfactorsincerebralischemiamicebrain
AT wuhongwei systematicalidentificationoftheprotectiveeffectofdanhonginjectionandbuchangnaoxintongcapsulesontranscriptionfactorsincerebralischemiamicebrain
AT tangshihuan systematicalidentificationoftheprotectiveeffectofdanhonginjectionandbuchangnaoxintongcapsulesontranscriptionfactorsincerebralischemiamicebrain
AT weijunying systematicalidentificationoftheprotectiveeffectofdanhonginjectionandbuchangnaoxintongcapsulesontranscriptionfactorsincerebralischemiamicebrain
AT yanghongjun systematicalidentificationoftheprotectiveeffectofdanhonginjectionandbuchangnaoxintongcapsulesontranscriptionfactorsincerebralischemiamicebrain