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A Web-Based Pharmacogenomics Search Tool for Precision Medicine in Perioperative Care

Background: Precision medicine represents an evolving approach to improve treatment efficacy by modifying it to individual patient’s gene variation. Pharmacogenetics, an applicable branch of precision medicine, identifies patient’s predisposing genotypes that alter the clinical outcome of the drug,...

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Autores principales: Zarei, Sara, Costas, Yensea, Orozco, Gloria, Zaydlin, Michelle, Mirtar, Ali, Abouali, Mohammad, Diaz-Marty, Cristina, Akhlaghipour, Golnoush, Fernandez Altamirano, Pablo, Gonzalez Cardona, Anel R., Reiley, Luz E., Mirzakhani, Hooman
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7564657/
https://www.ncbi.nlm.nih.gov/pubmed/32708157
http://dx.doi.org/10.3390/jpm10030065
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author Zarei, Sara
Costas, Yensea
Orozco, Gloria
Zaydlin, Michelle
Mirtar, Ali
Abouali, Mohammad
Diaz-Marty, Cristina
Akhlaghipour, Golnoush
Fernandez Altamirano, Pablo
Gonzalez Cardona, Anel R.
Reiley, Luz E.
Mirzakhani, Hooman
author_facet Zarei, Sara
Costas, Yensea
Orozco, Gloria
Zaydlin, Michelle
Mirtar, Ali
Abouali, Mohammad
Diaz-Marty, Cristina
Akhlaghipour, Golnoush
Fernandez Altamirano, Pablo
Gonzalez Cardona, Anel R.
Reiley, Luz E.
Mirzakhani, Hooman
author_sort Zarei, Sara
collection PubMed
description Background: Precision medicine represents an evolving approach to improve treatment efficacy by modifying it to individual patient’s gene variation. Pharmacogenetics, an applicable branch of precision medicine, identifies patient’s predisposing genotypes that alter the clinical outcome of the drug, hence preventing serious adverse drug reactions. Pharmacogenetics has been extensively applied to various fields of medicine, but in the field of anesthesiology and preoperative medicine, it has been unexploited. Although the US Food and Drug Administration (FDA) has a table of pharmacogenomics biomarkers and pharmacogenetics, this table only includes general side effects of the included drugs. Thus, the existing FDA table offers limited information on genetic variations that may increase drug side effects. Aims: The purpose of this paper is to provide a web-based pharmacogenomics search tool composed of a comprehensive list of medications that have pharmacogenetic relevance to perioperative medicine that might also have application in other fields of medicine. Method: For this investigation, the FDA table of pharmacogenomics biomarkers in drug labeling was utilized as an in-depth of drugs to construct our pharmacogenetics drug table. We performed a literature search for drug–gene interactions using the unique list of drugs in the FDA table. Publications containing the drug–gene interactions were identified and reviewed. Additional drugs and extracted gene-interactions in the identified publications were added to the constructed drug table. Result: Our tool provides a comprehensive pharmacogenetic drug table including 258 drugs with a total of 461 drug–gene interactions and their corresponding gene variations that might cause modifications in drug efficacy, pharmacokinetics, pharmacodynamics and adverse reactions. This tool is freely accessible online and can be applied as a web-based search instrument for drug–gene interactions in different fields of medicine, including perioperative medicine. Conclusion: In this research, we collected drug–gene interactions in a web-based searchable tool that could be used by physicians to expand their field knowledge in pharmacogenetics and facilitate their clinical decision making. This precision medicine tool could further serve in establishing a comprehensive perioperative pharmacogenomics database that also includes different fields of medicine that could influence the outcome of perioperative medicine.
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spelling pubmed-75646572020-10-29 A Web-Based Pharmacogenomics Search Tool for Precision Medicine in Perioperative Care Zarei, Sara Costas, Yensea Orozco, Gloria Zaydlin, Michelle Mirtar, Ali Abouali, Mohammad Diaz-Marty, Cristina Akhlaghipour, Golnoush Fernandez Altamirano, Pablo Gonzalez Cardona, Anel R. Reiley, Luz E. Mirzakhani, Hooman J Pers Med Article Background: Precision medicine represents an evolving approach to improve treatment efficacy by modifying it to individual patient’s gene variation. Pharmacogenetics, an applicable branch of precision medicine, identifies patient’s predisposing genotypes that alter the clinical outcome of the drug, hence preventing serious adverse drug reactions. Pharmacogenetics has been extensively applied to various fields of medicine, but in the field of anesthesiology and preoperative medicine, it has been unexploited. Although the US Food and Drug Administration (FDA) has a table of pharmacogenomics biomarkers and pharmacogenetics, this table only includes general side effects of the included drugs. Thus, the existing FDA table offers limited information on genetic variations that may increase drug side effects. Aims: The purpose of this paper is to provide a web-based pharmacogenomics search tool composed of a comprehensive list of medications that have pharmacogenetic relevance to perioperative medicine that might also have application in other fields of medicine. Method: For this investigation, the FDA table of pharmacogenomics biomarkers in drug labeling was utilized as an in-depth of drugs to construct our pharmacogenetics drug table. We performed a literature search for drug–gene interactions using the unique list of drugs in the FDA table. Publications containing the drug–gene interactions were identified and reviewed. Additional drugs and extracted gene-interactions in the identified publications were added to the constructed drug table. Result: Our tool provides a comprehensive pharmacogenetic drug table including 258 drugs with a total of 461 drug–gene interactions and their corresponding gene variations that might cause modifications in drug efficacy, pharmacokinetics, pharmacodynamics and adverse reactions. This tool is freely accessible online and can be applied as a web-based search instrument for drug–gene interactions in different fields of medicine, including perioperative medicine. Conclusion: In this research, we collected drug–gene interactions in a web-based searchable tool that could be used by physicians to expand their field knowledge in pharmacogenetics and facilitate their clinical decision making. This precision medicine tool could further serve in establishing a comprehensive perioperative pharmacogenomics database that also includes different fields of medicine that could influence the outcome of perioperative medicine. MDPI 2020-07-21 /pmc/articles/PMC7564657/ /pubmed/32708157 http://dx.doi.org/10.3390/jpm10030065 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zarei, Sara
Costas, Yensea
Orozco, Gloria
Zaydlin, Michelle
Mirtar, Ali
Abouali, Mohammad
Diaz-Marty, Cristina
Akhlaghipour, Golnoush
Fernandez Altamirano, Pablo
Gonzalez Cardona, Anel R.
Reiley, Luz E.
Mirzakhani, Hooman
A Web-Based Pharmacogenomics Search Tool for Precision Medicine in Perioperative Care
title A Web-Based Pharmacogenomics Search Tool for Precision Medicine in Perioperative Care
title_full A Web-Based Pharmacogenomics Search Tool for Precision Medicine in Perioperative Care
title_fullStr A Web-Based Pharmacogenomics Search Tool for Precision Medicine in Perioperative Care
title_full_unstemmed A Web-Based Pharmacogenomics Search Tool for Precision Medicine in Perioperative Care
title_short A Web-Based Pharmacogenomics Search Tool for Precision Medicine in Perioperative Care
title_sort web-based pharmacogenomics search tool for precision medicine in perioperative care
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7564657/
https://www.ncbi.nlm.nih.gov/pubmed/32708157
http://dx.doi.org/10.3390/jpm10030065
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