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Literature-Based Enrichment Insights into Redox Control of Vascular Biology

In cellular physiology and signaling, reactive oxygen species (ROS) play one of the most critical roles. ROS overproduction leads to cellular oxidative stress. This may lead to an irrecoverable imbalance of redox (oxidation-reduction reaction) function that deregulates redox homeostasis, which itsel...

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Autores principales: Essack, Magbubah, Salhi, Adil, Stanimirovic, Julijana, Tifratene, Faroug, Bin Raies, Arwa, Hungler, Arnaud, Uludag, Mahmut, Van Neste, Christophe, Trpkovic, Andreja, Bajic, Vladan P., Bajic, Vladimir B., Isenovic, Esma R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6542245/
https://www.ncbi.nlm.nih.gov/pubmed/31223421
http://dx.doi.org/10.1155/2019/1769437
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author Essack, Magbubah
Salhi, Adil
Stanimirovic, Julijana
Tifratene, Faroug
Bin Raies, Arwa
Hungler, Arnaud
Uludag, Mahmut
Van Neste, Christophe
Trpkovic, Andreja
Bajic, Vladan P.
Bajic, Vladimir B.
Isenovic, Esma R.
author_facet Essack, Magbubah
Salhi, Adil
Stanimirovic, Julijana
Tifratene, Faroug
Bin Raies, Arwa
Hungler, Arnaud
Uludag, Mahmut
Van Neste, Christophe
Trpkovic, Andreja
Bajic, Vladan P.
Bajic, Vladimir B.
Isenovic, Esma R.
author_sort Essack, Magbubah
collection PubMed
description In cellular physiology and signaling, reactive oxygen species (ROS) play one of the most critical roles. ROS overproduction leads to cellular oxidative stress. This may lead to an irrecoverable imbalance of redox (oxidation-reduction reaction) function that deregulates redox homeostasis, which itself could lead to several diseases including neurodegenerative disease, cardiovascular disease, and cancers. In this study, we focus on the redox effects related to vascular systems in mammals. To support research in this domain, we developed an online knowledge base, DES-RedoxVasc, which enables exploration of information contained in the biomedical scientific literature. The DES-RedoxVasc system analyzed 233399 documents consisting of PubMed abstracts and PubMed Central full-text articles related to different aspects of redox biology in vascular systems. It allows researchers to explore enriched concepts from 28 curated thematic dictionaries, as well as literature-derived potential associations of pairs of such enriched concepts, where associations themselves are statistically enriched. For example, the system allows exploration of associations of pathways, diseases, mutations, genes/proteins, miRNAs, long ncRNAs, toxins, drugs, biological processes, molecular functions, etc. that allow for insights about different aspects of redox effects and control of processes related to the vascular system. Moreover, we deliver case studies about some existing or possibly novel knowledge regarding redox of vascular biology demonstrating the usefulness of DES-RedoxVasc. DES-RedoxVasc is the first compiled knowledge base using text mining for the exploration of this topic.
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spelling pubmed-65422452019-06-20 Literature-Based Enrichment Insights into Redox Control of Vascular Biology Essack, Magbubah Salhi, Adil Stanimirovic, Julijana Tifratene, Faroug Bin Raies, Arwa Hungler, Arnaud Uludag, Mahmut Van Neste, Christophe Trpkovic, Andreja Bajic, Vladan P. Bajic, Vladimir B. Isenovic, Esma R. Oxid Med Cell Longev Review Article In cellular physiology and signaling, reactive oxygen species (ROS) play one of the most critical roles. ROS overproduction leads to cellular oxidative stress. This may lead to an irrecoverable imbalance of redox (oxidation-reduction reaction) function that deregulates redox homeostasis, which itself could lead to several diseases including neurodegenerative disease, cardiovascular disease, and cancers. In this study, we focus on the redox effects related to vascular systems in mammals. To support research in this domain, we developed an online knowledge base, DES-RedoxVasc, which enables exploration of information contained in the biomedical scientific literature. The DES-RedoxVasc system analyzed 233399 documents consisting of PubMed abstracts and PubMed Central full-text articles related to different aspects of redox biology in vascular systems. It allows researchers to explore enriched concepts from 28 curated thematic dictionaries, as well as literature-derived potential associations of pairs of such enriched concepts, where associations themselves are statistically enriched. For example, the system allows exploration of associations of pathways, diseases, mutations, genes/proteins, miRNAs, long ncRNAs, toxins, drugs, biological processes, molecular functions, etc. that allow for insights about different aspects of redox effects and control of processes related to the vascular system. Moreover, we deliver case studies about some existing or possibly novel knowledge regarding redox of vascular biology demonstrating the usefulness of DES-RedoxVasc. DES-RedoxVasc is the first compiled knowledge base using text mining for the exploration of this topic. Hindawi 2019-05-16 /pmc/articles/PMC6542245/ /pubmed/31223421 http://dx.doi.org/10.1155/2019/1769437 Text en Copyright © 2019 Magbubah Essack et al. http://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 Review Article
Essack, Magbubah
Salhi, Adil
Stanimirovic, Julijana
Tifratene, Faroug
Bin Raies, Arwa
Hungler, Arnaud
Uludag, Mahmut
Van Neste, Christophe
Trpkovic, Andreja
Bajic, Vladan P.
Bajic, Vladimir B.
Isenovic, Esma R.
Literature-Based Enrichment Insights into Redox Control of Vascular Biology
title Literature-Based Enrichment Insights into Redox Control of Vascular Biology
title_full Literature-Based Enrichment Insights into Redox Control of Vascular Biology
title_fullStr Literature-Based Enrichment Insights into Redox Control of Vascular Biology
title_full_unstemmed Literature-Based Enrichment Insights into Redox Control of Vascular Biology
title_short Literature-Based Enrichment Insights into Redox Control of Vascular Biology
title_sort literature-based enrichment insights into redox control of vascular biology
topic Review Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6542245/
https://www.ncbi.nlm.nih.gov/pubmed/31223421
http://dx.doi.org/10.1155/2019/1769437
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