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A proteome-wide systems toxicological approach deciphers the interaction network of chemotherapeutic drugs in the cardiovascular milieu

Onco-cardiology is critical for the management of cancer therapeutics since many of the anti-cancer agents are associated with cardiotoxicity. Therefore, the major aim of the current study is to employ a novel in silico method combined with experimental validation to explore off-targets and prioriti...

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Autores principales: Giri, Suvendu, Manivannan, Jeganathan, Srinivasan, Bhuvaneswari, Sundaresan, Lakshmikirupa, Gajalakshmi, Palanivel, Chatterjee, Suvro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9080753/
https://www.ncbi.nlm.nih.gov/pubmed/35541641
http://dx.doi.org/10.1039/c8ra02877j
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author Giri, Suvendu
Manivannan, Jeganathan
Srinivasan, Bhuvaneswari
Sundaresan, Lakshmikirupa
Gajalakshmi, Palanivel
Chatterjee, Suvro
author_facet Giri, Suvendu
Manivannan, Jeganathan
Srinivasan, Bhuvaneswari
Sundaresan, Lakshmikirupa
Gajalakshmi, Palanivel
Chatterjee, Suvro
author_sort Giri, Suvendu
collection PubMed
description Onco-cardiology is critical for the management of cancer therapeutics since many of the anti-cancer agents are associated with cardiotoxicity. Therefore, the major aim of the current study is to employ a novel in silico method combined with experimental validation to explore off-targets and prioritize the enriched molecular pathways related to the specific cardiovascular events other than their intended targets by deriving relationship between drug-target-pathways and cardiovascular complications in order to help onco-cardiologists for the management of strategies to minimize cardiotoxicity. A systems biological understanding of the multi-target effects of a drug requires prior knowledge of proteome-wide binding profiles. In order to achieve the above, we have utilized PharmMapper, a web-based tool that uses a reverse pharmacophore mapping approach (spatial arrangement of features essential for a molecule to interact with a specific target receptor), along with KEGG for exploring the pathway relationship. In the validation part of the study, predicted protein targets and signalling pathways were strengthened with existing datasets of DrugBank and antibody arrays specific to vascular endothelial growth factor (VEGF) signalling in the case of 5-fluorouracil as direct experimental evidence. The current systems toxicological method illustrates the potential of the above big-data in supporting the knowledge of onco-cardiological indications which may lead to the generation of a decision making catalogue in future therapeutic prescription.
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spelling pubmed-90807532022-05-09 A proteome-wide systems toxicological approach deciphers the interaction network of chemotherapeutic drugs in the cardiovascular milieu Giri, Suvendu Manivannan, Jeganathan Srinivasan, Bhuvaneswari Sundaresan, Lakshmikirupa Gajalakshmi, Palanivel Chatterjee, Suvro RSC Adv Chemistry Onco-cardiology is critical for the management of cancer therapeutics since many of the anti-cancer agents are associated with cardiotoxicity. Therefore, the major aim of the current study is to employ a novel in silico method combined with experimental validation to explore off-targets and prioritize the enriched molecular pathways related to the specific cardiovascular events other than their intended targets by deriving relationship between drug-target-pathways and cardiovascular complications in order to help onco-cardiologists for the management of strategies to minimize cardiotoxicity. A systems biological understanding of the multi-target effects of a drug requires prior knowledge of proteome-wide binding profiles. In order to achieve the above, we have utilized PharmMapper, a web-based tool that uses a reverse pharmacophore mapping approach (spatial arrangement of features essential for a molecule to interact with a specific target receptor), along with KEGG for exploring the pathway relationship. In the validation part of the study, predicted protein targets and signalling pathways were strengthened with existing datasets of DrugBank and antibody arrays specific to vascular endothelial growth factor (VEGF) signalling in the case of 5-fluorouracil as direct experimental evidence. The current systems toxicological method illustrates the potential of the above big-data in supporting the knowledge of onco-cardiological indications which may lead to the generation of a decision making catalogue in future therapeutic prescription. The Royal Society of Chemistry 2018-06-04 /pmc/articles/PMC9080753/ /pubmed/35541641 http://dx.doi.org/10.1039/c8ra02877j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Giri, Suvendu
Manivannan, Jeganathan
Srinivasan, Bhuvaneswari
Sundaresan, Lakshmikirupa
Gajalakshmi, Palanivel
Chatterjee, Suvro
A proteome-wide systems toxicological approach deciphers the interaction network of chemotherapeutic drugs in the cardiovascular milieu
title A proteome-wide systems toxicological approach deciphers the interaction network of chemotherapeutic drugs in the cardiovascular milieu
title_full A proteome-wide systems toxicological approach deciphers the interaction network of chemotherapeutic drugs in the cardiovascular milieu
title_fullStr A proteome-wide systems toxicological approach deciphers the interaction network of chemotherapeutic drugs in the cardiovascular milieu
title_full_unstemmed A proteome-wide systems toxicological approach deciphers the interaction network of chemotherapeutic drugs in the cardiovascular milieu
title_short A proteome-wide systems toxicological approach deciphers the interaction network of chemotherapeutic drugs in the cardiovascular milieu
title_sort proteome-wide systems toxicological approach deciphers the interaction network of chemotherapeutic drugs in the cardiovascular milieu
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9080753/
https://www.ncbi.nlm.nih.gov/pubmed/35541641
http://dx.doi.org/10.1039/c8ra02877j
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