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A virtual molecular tumor board to improve efficiency and scalability of delivering precision oncology to physicians and their patients

OBJECTIVES: Scalable informatics solutions that provide molecularly tailored treatment recommendations to clinicians are needed to streamline precision oncology in care settings. MATERIALS AND METHODS: We developed a cloud-based virtual molecular tumor board (VMTB) platform that included a knowledge...

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Autores principales: Pishvaian, Michael J, Blais, Edik M, Bender, R Joseph, Rao, Shruti, Boca, Simina M, Chung, Vincent, Hendifar, Andrew E, Mikhail, Sam, Sohal, Davendra P S, Pohlmann, Paula R, Moore, Kathleen N, He, Kai, Monk, Bradley J, Coleman, Robert L, Herzog, Thomas J, Halverson, David D, DeArbeloa, Patricia, Petricoin, Emanuel F, Madhavan, Subha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6994017/
https://www.ncbi.nlm.nih.gov/pubmed/32025647
http://dx.doi.org/10.1093/jamiaopen/ooz045
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author Pishvaian, Michael J
Blais, Edik M
Bender, R Joseph
Rao, Shruti
Boca, Simina M
Chung, Vincent
Hendifar, Andrew E
Mikhail, Sam
Sohal, Davendra P S
Pohlmann, Paula R
Moore, Kathleen N
He, Kai
Monk, Bradley J
Coleman, Robert L
Herzog, Thomas J
Halverson, David D
DeArbeloa, Patricia
Petricoin, Emanuel F
Madhavan, Subha
author_facet Pishvaian, Michael J
Blais, Edik M
Bender, R Joseph
Rao, Shruti
Boca, Simina M
Chung, Vincent
Hendifar, Andrew E
Mikhail, Sam
Sohal, Davendra P S
Pohlmann, Paula R
Moore, Kathleen N
He, Kai
Monk, Bradley J
Coleman, Robert L
Herzog, Thomas J
Halverson, David D
DeArbeloa, Patricia
Petricoin, Emanuel F
Madhavan, Subha
author_sort Pishvaian, Michael J
collection PubMed
description OBJECTIVES: Scalable informatics solutions that provide molecularly tailored treatment recommendations to clinicians are needed to streamline precision oncology in care settings. MATERIALS AND METHODS: We developed a cloud-based virtual molecular tumor board (VMTB) platform that included a knowledgebase, scoring model, rules engine, an asynchronous virtual chat room and a reporting tool that generated a treatment plan for each of the 1725 patients based on their molecular profile, previous treatment history, structured trial eligibility criteria, clinically relevant cancer gene-variant assertions, biomarker-treatment associations, and current treatment guidelines. The VMTB systematically allows clinician users to combine expert-curated data and structured data from clinical charts along with molecular testing data to develop consensus on treatments, especially those that require off-label and clinical trial considerations. RESULTS: The VMTB was used as part of the cancer care process for a focused subset of 1725 patients referred by advocacy organizations wherein resultant personalized reports were successfully delivered to treating oncologists. Median turnaround time from data receipt to report delivery decreased from 14 days to 4 days over 4 years while the volume of cases increased nearly 2-fold each year. Using a novel scoring model for ranking therapy options, oncologists chose to implement the VMTB-derived therapies over others, except when pursuing immunotherapy options without molecular support. DISCUSSION: VMTBs will play an increasingly critical role in precision oncology as the compendium of biomarkers and associated therapy options available to a patient continues to expand. CONCLUSION: Further development of such clinical augmentation tools that systematically combine patient-derived molecular data, real-world evidence from electronic health records and expert curated knowledgebases on biomarkers with computational tools for ranking best treatments can support care pathways at point of care.
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spelling pubmed-69940172020-02-05 A virtual molecular tumor board to improve efficiency and scalability of delivering precision oncology to physicians and their patients Pishvaian, Michael J Blais, Edik M Bender, R Joseph Rao, Shruti Boca, Simina M Chung, Vincent Hendifar, Andrew E Mikhail, Sam Sohal, Davendra P S Pohlmann, Paula R Moore, Kathleen N He, Kai Monk, Bradley J Coleman, Robert L Herzog, Thomas J Halverson, David D DeArbeloa, Patricia Petricoin, Emanuel F Madhavan, Subha JAMIA Open Research and Applications OBJECTIVES: Scalable informatics solutions that provide molecularly tailored treatment recommendations to clinicians are needed to streamline precision oncology in care settings. MATERIALS AND METHODS: We developed a cloud-based virtual molecular tumor board (VMTB) platform that included a knowledgebase, scoring model, rules engine, an asynchronous virtual chat room and a reporting tool that generated a treatment plan for each of the 1725 patients based on their molecular profile, previous treatment history, structured trial eligibility criteria, clinically relevant cancer gene-variant assertions, biomarker-treatment associations, and current treatment guidelines. The VMTB systematically allows clinician users to combine expert-curated data and structured data from clinical charts along with molecular testing data to develop consensus on treatments, especially those that require off-label and clinical trial considerations. RESULTS: The VMTB was used as part of the cancer care process for a focused subset of 1725 patients referred by advocacy organizations wherein resultant personalized reports were successfully delivered to treating oncologists. Median turnaround time from data receipt to report delivery decreased from 14 days to 4 days over 4 years while the volume of cases increased nearly 2-fold each year. Using a novel scoring model for ranking therapy options, oncologists chose to implement the VMTB-derived therapies over others, except when pursuing immunotherapy options without molecular support. DISCUSSION: VMTBs will play an increasingly critical role in precision oncology as the compendium of biomarkers and associated therapy options available to a patient continues to expand. CONCLUSION: Further development of such clinical augmentation tools that systematically combine patient-derived molecular data, real-world evidence from electronic health records and expert curated knowledgebases on biomarkers with computational tools for ranking best treatments can support care pathways at point of care. Oxford University Press 2019-10-07 /pmc/articles/PMC6994017/ /pubmed/32025647 http://dx.doi.org/10.1093/jamiaopen/ooz045 Text en © The Author(s) 2019. Published by Oxford University Press on behalf of the American Medical Informatics Association. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research and Applications
Pishvaian, Michael J
Blais, Edik M
Bender, R Joseph
Rao, Shruti
Boca, Simina M
Chung, Vincent
Hendifar, Andrew E
Mikhail, Sam
Sohal, Davendra P S
Pohlmann, Paula R
Moore, Kathleen N
He, Kai
Monk, Bradley J
Coleman, Robert L
Herzog, Thomas J
Halverson, David D
DeArbeloa, Patricia
Petricoin, Emanuel F
Madhavan, Subha
A virtual molecular tumor board to improve efficiency and scalability of delivering precision oncology to physicians and their patients
title A virtual molecular tumor board to improve efficiency and scalability of delivering precision oncology to physicians and their patients
title_full A virtual molecular tumor board to improve efficiency and scalability of delivering precision oncology to physicians and their patients
title_fullStr A virtual molecular tumor board to improve efficiency and scalability of delivering precision oncology to physicians and their patients
title_full_unstemmed A virtual molecular tumor board to improve efficiency and scalability of delivering precision oncology to physicians and their patients
title_short A virtual molecular tumor board to improve efficiency and scalability of delivering precision oncology to physicians and their patients
title_sort virtual molecular tumor board to improve efficiency and scalability of delivering precision oncology to physicians and their patients
topic Research and Applications
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6994017/
https://www.ncbi.nlm.nih.gov/pubmed/32025647
http://dx.doi.org/10.1093/jamiaopen/ooz045
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