Cargando…

A clinically useful and biologically informative genomic classifier for papillary thyroid cancer

Clinical management of papillary thyroid cancer depends on estimations of prognosis. Standard care, which relies on prognostication based on clinicopathologic features, is inaccurate. We applied a machine learning algorithm (HighLifeR) to 502 cases annotated by The Cancer Genome Atlas Project to der...

Descripción completa

Detalles Bibliográficos
Autores principales: Craig, Steven, Stretch, Cynthia, Farshidfar, Farshad, Sheka, Dropen, Alabi, Nikolay, Siddiqui, Ashar, Kopciuk, Karen, Park, Young Joo, Khalil, Moosa, Khan, Faisal, Harvey, Adrian, Bathe, Oliver F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10523308/
https://www.ncbi.nlm.nih.gov/pubmed/37772080
http://dx.doi.org/10.3389/fendo.2023.1220617
_version_ 1785110539908677632
author Craig, Steven
Stretch, Cynthia
Farshidfar, Farshad
Sheka, Dropen
Alabi, Nikolay
Siddiqui, Ashar
Kopciuk, Karen
Park, Young Joo
Khalil, Moosa
Khan, Faisal
Harvey, Adrian
Bathe, Oliver F.
author_facet Craig, Steven
Stretch, Cynthia
Farshidfar, Farshad
Sheka, Dropen
Alabi, Nikolay
Siddiqui, Ashar
Kopciuk, Karen
Park, Young Joo
Khalil, Moosa
Khan, Faisal
Harvey, Adrian
Bathe, Oliver F.
author_sort Craig, Steven
collection PubMed
description Clinical management of papillary thyroid cancer depends on estimations of prognosis. Standard care, which relies on prognostication based on clinicopathologic features, is inaccurate. We applied a machine learning algorithm (HighLifeR) to 502 cases annotated by The Cancer Genome Atlas Project to derive an accurate molecular prognostic classifier. Unsupervised analysis of the 82 genes that were most closely associated with recurrence after surgery enabled the identification of three unique molecular subtypes. One subtype had a high recurrence rate, an immunosuppressed microenvironment, and enrichment of the EZH2-HOTAIR pathway. Two other unique molecular subtypes with a lower rate of recurrence were identified, including one subtype with a paucity of BRAF(V600E) mutations and a high rate of RAS mutations. The genomic risk classifier, in addition to tumor size and lymph node status, enabled effective prognostication that outperformed the American Thyroid Association clinical risk stratification. The genomic classifier we derived can potentially be applied preoperatively to direct clinical decision-making. Distinct biological features of molecular subtypes also have implications regarding sensitivity to radioactive iodine, EZH2 inhibitors, and immune checkpoint inhibitors.
format Online
Article
Text
id pubmed-10523308
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-105233082023-09-28 A clinically useful and biologically informative genomic classifier for papillary thyroid cancer Craig, Steven Stretch, Cynthia Farshidfar, Farshad Sheka, Dropen Alabi, Nikolay Siddiqui, Ashar Kopciuk, Karen Park, Young Joo Khalil, Moosa Khan, Faisal Harvey, Adrian Bathe, Oliver F. Front Endocrinol (Lausanne) Endocrinology Clinical management of papillary thyroid cancer depends on estimations of prognosis. Standard care, which relies on prognostication based on clinicopathologic features, is inaccurate. We applied a machine learning algorithm (HighLifeR) to 502 cases annotated by The Cancer Genome Atlas Project to derive an accurate molecular prognostic classifier. Unsupervised analysis of the 82 genes that were most closely associated with recurrence after surgery enabled the identification of three unique molecular subtypes. One subtype had a high recurrence rate, an immunosuppressed microenvironment, and enrichment of the EZH2-HOTAIR pathway. Two other unique molecular subtypes with a lower rate of recurrence were identified, including one subtype with a paucity of BRAF(V600E) mutations and a high rate of RAS mutations. The genomic risk classifier, in addition to tumor size and lymph node status, enabled effective prognostication that outperformed the American Thyroid Association clinical risk stratification. The genomic classifier we derived can potentially be applied preoperatively to direct clinical decision-making. Distinct biological features of molecular subtypes also have implications regarding sensitivity to radioactive iodine, EZH2 inhibitors, and immune checkpoint inhibitors. Frontiers Media S.A. 2023-09-12 /pmc/articles/PMC10523308/ /pubmed/37772080 http://dx.doi.org/10.3389/fendo.2023.1220617 Text en Copyright © 2023 Craig, Stretch, Farshidfar, Sheka, Alabi, Siddiqui, Kopciuk, Park, Khalil, Khan, Harvey and Bathe https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Endocrinology
Craig, Steven
Stretch, Cynthia
Farshidfar, Farshad
Sheka, Dropen
Alabi, Nikolay
Siddiqui, Ashar
Kopciuk, Karen
Park, Young Joo
Khalil, Moosa
Khan, Faisal
Harvey, Adrian
Bathe, Oliver F.
A clinically useful and biologically informative genomic classifier for papillary thyroid cancer
title A clinically useful and biologically informative genomic classifier for papillary thyroid cancer
title_full A clinically useful and biologically informative genomic classifier for papillary thyroid cancer
title_fullStr A clinically useful and biologically informative genomic classifier for papillary thyroid cancer
title_full_unstemmed A clinically useful and biologically informative genomic classifier for papillary thyroid cancer
title_short A clinically useful and biologically informative genomic classifier for papillary thyroid cancer
title_sort clinically useful and biologically informative genomic classifier for papillary thyroid cancer
topic Endocrinology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10523308/
https://www.ncbi.nlm.nih.gov/pubmed/37772080
http://dx.doi.org/10.3389/fendo.2023.1220617
work_keys_str_mv AT craigsteven aclinicallyusefulandbiologicallyinformativegenomicclassifierforpapillarythyroidcancer
AT stretchcynthia aclinicallyusefulandbiologicallyinformativegenomicclassifierforpapillarythyroidcancer
AT farshidfarfarshad aclinicallyusefulandbiologicallyinformativegenomicclassifierforpapillarythyroidcancer
AT shekadropen aclinicallyusefulandbiologicallyinformativegenomicclassifierforpapillarythyroidcancer
AT alabinikolay aclinicallyusefulandbiologicallyinformativegenomicclassifierforpapillarythyroidcancer
AT siddiquiashar aclinicallyusefulandbiologicallyinformativegenomicclassifierforpapillarythyroidcancer
AT kopciukkaren aclinicallyusefulandbiologicallyinformativegenomicclassifierforpapillarythyroidcancer
AT parkyoungjoo aclinicallyusefulandbiologicallyinformativegenomicclassifierforpapillarythyroidcancer
AT khalilmoosa aclinicallyusefulandbiologicallyinformativegenomicclassifierforpapillarythyroidcancer
AT khanfaisal aclinicallyusefulandbiologicallyinformativegenomicclassifierforpapillarythyroidcancer
AT harveyadrian aclinicallyusefulandbiologicallyinformativegenomicclassifierforpapillarythyroidcancer
AT batheoliverf aclinicallyusefulandbiologicallyinformativegenomicclassifierforpapillarythyroidcancer
AT craigsteven clinicallyusefulandbiologicallyinformativegenomicclassifierforpapillarythyroidcancer
AT stretchcynthia clinicallyusefulandbiologicallyinformativegenomicclassifierforpapillarythyroidcancer
AT farshidfarfarshad clinicallyusefulandbiologicallyinformativegenomicclassifierforpapillarythyroidcancer
AT shekadropen clinicallyusefulandbiologicallyinformativegenomicclassifierforpapillarythyroidcancer
AT alabinikolay clinicallyusefulandbiologicallyinformativegenomicclassifierforpapillarythyroidcancer
AT siddiquiashar clinicallyusefulandbiologicallyinformativegenomicclassifierforpapillarythyroidcancer
AT kopciukkaren clinicallyusefulandbiologicallyinformativegenomicclassifierforpapillarythyroidcancer
AT parkyoungjoo clinicallyusefulandbiologicallyinformativegenomicclassifierforpapillarythyroidcancer
AT khalilmoosa clinicallyusefulandbiologicallyinformativegenomicclassifierforpapillarythyroidcancer
AT khanfaisal clinicallyusefulandbiologicallyinformativegenomicclassifierforpapillarythyroidcancer
AT harveyadrian clinicallyusefulandbiologicallyinformativegenomicclassifierforpapillarythyroidcancer
AT batheoliverf clinicallyusefulandbiologicallyinformativegenomicclassifierforpapillarythyroidcancer