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A Genomically and Clinically Annotated Patient-Derived Xenograft Resource for Preclinical Research in Non–Small Cell Lung Cancer

Patient-derived xenograft (PDX) models are an effective preclinical in vivo platform for testing the efficacy of novel drugs and drug combinations for cancer therapeutics. Here we describe a repository of 79 genomically and clinically annotated lung cancer PDXs available from The Jackson Laboratory...

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Autores principales: Woo, Xing Yi, Srivastava, Anuj, Mack, Philip C., Graber, Joel H., Sanderson, Brian J., Lloyd, Michael W., Chen, Mandy, Domanskyi, Sergii, Gandour-Edwards, Regina, Tsai, Rebekah A., Keck, James, Cheng, Mingshan, Bundy, Margaret, Jocoy, Emily L., Riess, Jonathan W., Holland, William, Grubb, Stephen C., Peterson, James G., Stafford, Grace A., Paisie, Carolyn, Neuhauser, Steven B., Karuturi, R. Krishna Murthy, George, Joshy, Simons, Allen K., Chavaree, Margaret, Tepper, Clifford G., Goodwin, Neal, Airhart, Susan D., Lara, Primo N., Openshaw, Thomas H., Liu, Edison T., Gandara, David R., Bult, Carol J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for Cancer Research 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9664138/
https://www.ncbi.nlm.nih.gov/pubmed/36069866
http://dx.doi.org/10.1158/0008-5472.CAN-22-0948
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author Woo, Xing Yi
Srivastava, Anuj
Mack, Philip C.
Graber, Joel H.
Sanderson, Brian J.
Lloyd, Michael W.
Chen, Mandy
Domanskyi, Sergii
Gandour-Edwards, Regina
Tsai, Rebekah A.
Keck, James
Cheng, Mingshan
Bundy, Margaret
Jocoy, Emily L.
Riess, Jonathan W.
Holland, William
Grubb, Stephen C.
Peterson, James G.
Stafford, Grace A.
Paisie, Carolyn
Neuhauser, Steven B.
Karuturi, R. Krishna Murthy
George, Joshy
Simons, Allen K.
Chavaree, Margaret
Tepper, Clifford G.
Goodwin, Neal
Airhart, Susan D.
Lara, Primo N.
Openshaw, Thomas H.
Liu, Edison T.
Gandara, David R.
Bult, Carol J.
author_facet Woo, Xing Yi
Srivastava, Anuj
Mack, Philip C.
Graber, Joel H.
Sanderson, Brian J.
Lloyd, Michael W.
Chen, Mandy
Domanskyi, Sergii
Gandour-Edwards, Regina
Tsai, Rebekah A.
Keck, James
Cheng, Mingshan
Bundy, Margaret
Jocoy, Emily L.
Riess, Jonathan W.
Holland, William
Grubb, Stephen C.
Peterson, James G.
Stafford, Grace A.
Paisie, Carolyn
Neuhauser, Steven B.
Karuturi, R. Krishna Murthy
George, Joshy
Simons, Allen K.
Chavaree, Margaret
Tepper, Clifford G.
Goodwin, Neal
Airhart, Susan D.
Lara, Primo N.
Openshaw, Thomas H.
Liu, Edison T.
Gandara, David R.
Bult, Carol J.
author_sort Woo, Xing Yi
collection PubMed
description Patient-derived xenograft (PDX) models are an effective preclinical in vivo platform for testing the efficacy of novel drugs and drug combinations for cancer therapeutics. Here we describe a repository of 79 genomically and clinically annotated lung cancer PDXs available from The Jackson Laboratory that have been extensively characterized for histopathologic features, mutational profiles, gene expression, and copy-number aberrations. Most of the PDXs are models of non–small cell lung cancer (NSCLC), including 37 lung adenocarcinoma (LUAD) and 33 lung squamous cell carcinoma (LUSC) models. Other lung cancer models in the repository include four small cell carcinomas, two large cell neuroendocrine carcinomas, two adenosquamous carcinomas, and one pleomorphic carcinoma. Models with both de novo and acquired resistance to targeted therapies with tyrosine kinase inhibitors are available in the collection. The genomic profiles of the LUAD and LUSC PDX models are consistent with those observed in patient tumors from The Cancer Genome Atlas and previously characterized gene expression-based molecular subtypes. Clinically relevant mutations identified in the original patient tumors were confirmed in engrafted PDX tumors. Treatment studies performed in a subset of the models recapitulated the responses expected on the basis of the observed genomic profiles. These models therefore serve as a valuable preclinical platform for translational cancer research. SIGNIFICANCE: Patient-derived xenografts of lung cancer retain key features observed in the originating patient tumors and show expected responses to treatment with standard-of-care agents, providing experimentally tractable and reproducible models for preclinical investigations.
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spelling pubmed-96641382022-12-11 A Genomically and Clinically Annotated Patient-Derived Xenograft Resource for Preclinical Research in Non–Small Cell Lung Cancer Woo, Xing Yi Srivastava, Anuj Mack, Philip C. Graber, Joel H. Sanderson, Brian J. Lloyd, Michael W. Chen, Mandy Domanskyi, Sergii Gandour-Edwards, Regina Tsai, Rebekah A. Keck, James Cheng, Mingshan Bundy, Margaret Jocoy, Emily L. Riess, Jonathan W. Holland, William Grubb, Stephen C. Peterson, James G. Stafford, Grace A. Paisie, Carolyn Neuhauser, Steven B. Karuturi, R. Krishna Murthy George, Joshy Simons, Allen K. Chavaree, Margaret Tepper, Clifford G. Goodwin, Neal Airhart, Susan D. Lara, Primo N. Openshaw, Thomas H. Liu, Edison T. Gandara, David R. Bult, Carol J. Cancer Res Resource Report Patient-derived xenograft (PDX) models are an effective preclinical in vivo platform for testing the efficacy of novel drugs and drug combinations for cancer therapeutics. Here we describe a repository of 79 genomically and clinically annotated lung cancer PDXs available from The Jackson Laboratory that have been extensively characterized for histopathologic features, mutational profiles, gene expression, and copy-number aberrations. Most of the PDXs are models of non–small cell lung cancer (NSCLC), including 37 lung adenocarcinoma (LUAD) and 33 lung squamous cell carcinoma (LUSC) models. Other lung cancer models in the repository include four small cell carcinomas, two large cell neuroendocrine carcinomas, two adenosquamous carcinomas, and one pleomorphic carcinoma. Models with both de novo and acquired resistance to targeted therapies with tyrosine kinase inhibitors are available in the collection. The genomic profiles of the LUAD and LUSC PDX models are consistent with those observed in patient tumors from The Cancer Genome Atlas and previously characterized gene expression-based molecular subtypes. Clinically relevant mutations identified in the original patient tumors were confirmed in engrafted PDX tumors. Treatment studies performed in a subset of the models recapitulated the responses expected on the basis of the observed genomic profiles. These models therefore serve as a valuable preclinical platform for translational cancer research. SIGNIFICANCE: Patient-derived xenografts of lung cancer retain key features observed in the originating patient tumors and show expected responses to treatment with standard-of-care agents, providing experimentally tractable and reproducible models for preclinical investigations. American Association for Cancer Research 2022-11-15 2022-09-07 /pmc/articles/PMC9664138/ /pubmed/36069866 http://dx.doi.org/10.1158/0008-5472.CAN-22-0948 Text en ©2022 The Authors; Published by the American Association for Cancer Research https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0) license.
spellingShingle Resource Report
Woo, Xing Yi
Srivastava, Anuj
Mack, Philip C.
Graber, Joel H.
Sanderson, Brian J.
Lloyd, Michael W.
Chen, Mandy
Domanskyi, Sergii
Gandour-Edwards, Regina
Tsai, Rebekah A.
Keck, James
Cheng, Mingshan
Bundy, Margaret
Jocoy, Emily L.
Riess, Jonathan W.
Holland, William
Grubb, Stephen C.
Peterson, James G.
Stafford, Grace A.
Paisie, Carolyn
Neuhauser, Steven B.
Karuturi, R. Krishna Murthy
George, Joshy
Simons, Allen K.
Chavaree, Margaret
Tepper, Clifford G.
Goodwin, Neal
Airhart, Susan D.
Lara, Primo N.
Openshaw, Thomas H.
Liu, Edison T.
Gandara, David R.
Bult, Carol J.
A Genomically and Clinically Annotated Patient-Derived Xenograft Resource for Preclinical Research in Non–Small Cell Lung Cancer
title A Genomically and Clinically Annotated Patient-Derived Xenograft Resource for Preclinical Research in Non–Small Cell Lung Cancer
title_full A Genomically and Clinically Annotated Patient-Derived Xenograft Resource for Preclinical Research in Non–Small Cell Lung Cancer
title_fullStr A Genomically and Clinically Annotated Patient-Derived Xenograft Resource for Preclinical Research in Non–Small Cell Lung Cancer
title_full_unstemmed A Genomically and Clinically Annotated Patient-Derived Xenograft Resource for Preclinical Research in Non–Small Cell Lung Cancer
title_short A Genomically and Clinically Annotated Patient-Derived Xenograft Resource for Preclinical Research in Non–Small Cell Lung Cancer
title_sort genomically and clinically annotated patient-derived xenograft resource for preclinical research in non–small cell lung cancer
topic Resource Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9664138/
https://www.ncbi.nlm.nih.gov/pubmed/36069866
http://dx.doi.org/10.1158/0008-5472.CAN-22-0948
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