Cargando…

Single-Cell Characterization of Pulmonary Nodules Implicates Suppression of Immunosurveillance across Early Stages of Lung Adenocarcinoma

A greater understanding of molecular, cellular, and immunological changes during the early stages of lung adenocarcinoma development could improve diagnostic and therapeutic approaches in patients with pulmonary nodules at risk for lung cancer. To elucidate the immunopathogenesis of early lung tumor...

Descripción completa

Detalles Bibliográficos
Autores principales: Yanagawa, Jane, Tran, Linh M., Salehi-Rad, Ramin, Lim, Raymond J., Dumitras, Camelia, Fung, Eileen, Wallace, William D., Prosper, Ashley E., Fishbein, Gregory, Shea, Conor, Hong, Rui, Kahangi, Bitta, Deng, John J., Gower, Adam C., Liu, Bin, Campbell, Joshua D., Mazzilli, Sarah A., Beane, Jennifer E., Kadara, Humam, Lenburg, Marc E., Spira, Avrum E., Aberle, Denise R., Krysan, Kostyantyn, Dubinett, Steven M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for Cancer Research 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10544016/
https://www.ncbi.nlm.nih.gov/pubmed/37477508
http://dx.doi.org/10.1158/0008-5472.CAN-23-0128
_version_ 1785114410858053632
author Yanagawa, Jane
Tran, Linh M.
Salehi-Rad, Ramin
Lim, Raymond J.
Dumitras, Camelia
Fung, Eileen
Wallace, William D.
Prosper, Ashley E.
Fishbein, Gregory
Shea, Conor
Hong, Rui
Kahangi, Bitta
Deng, John J.
Gower, Adam C.
Liu, Bin
Campbell, Joshua D.
Mazzilli, Sarah A.
Beane, Jennifer E.
Kadara, Humam
Lenburg, Marc E.
Spira, Avrum E.
Aberle, Denise R.
Krysan, Kostyantyn
Dubinett, Steven M.
author_facet Yanagawa, Jane
Tran, Linh M.
Salehi-Rad, Ramin
Lim, Raymond J.
Dumitras, Camelia
Fung, Eileen
Wallace, William D.
Prosper, Ashley E.
Fishbein, Gregory
Shea, Conor
Hong, Rui
Kahangi, Bitta
Deng, John J.
Gower, Adam C.
Liu, Bin
Campbell, Joshua D.
Mazzilli, Sarah A.
Beane, Jennifer E.
Kadara, Humam
Lenburg, Marc E.
Spira, Avrum E.
Aberle, Denise R.
Krysan, Kostyantyn
Dubinett, Steven M.
author_sort Yanagawa, Jane
collection PubMed
description A greater understanding of molecular, cellular, and immunological changes during the early stages of lung adenocarcinoma development could improve diagnostic and therapeutic approaches in patients with pulmonary nodules at risk for lung cancer. To elucidate the immunopathogenesis of early lung tumorigenesis, we evaluated surgically resected pulmonary nodules representing the spectrum of early lung adenocarcinoma as well as associated normal lung tissues using single-cell RNA sequencing and validated the results by flow cytometry and multiplex immunofluorescence (MIF). Single-cell transcriptomics revealed a significant decrease in gene expression associated with cytolytic activities of tumor-infiltrating natural killer and natural killer T cells. This was accompanied by a reduction in effector T cells and an increase of CD4(+) regulatory T cells (Treg) in subsolid nodules. An independent set of resected pulmonary nodules consisting of both adenocarcinomas and associated premalignant lesions corroborated the early increment of Tregs in premalignant lesions compared with the associated normal lung tissues by MIF. Gene expression analysis indicated that cancer-associated alveolar type 2 cells and fibroblasts may contribute to the deregulation of the extracellular matrix, potentially affecting immune infiltration in subsolid nodules through ligand–receptor interactions. These findings suggest that there is a suppression of immune surveillance across the spectrum of early-stage lung adenocarcinoma. SIGNIFICANCE: Analysis of a spectrum of subsolid pulmonary nodules by single-cell RNA sequencing provides insights into the immune regulation and cell–cell interactions in the tumor microenvironment during early lung tumor development.
format Online
Article
Text
id pubmed-10544016
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher American Association for Cancer Research
record_format MEDLINE/PubMed
spelling pubmed-105440162023-10-03 Single-Cell Characterization of Pulmonary Nodules Implicates Suppression of Immunosurveillance across Early Stages of Lung Adenocarcinoma Yanagawa, Jane Tran, Linh M. Salehi-Rad, Ramin Lim, Raymond J. Dumitras, Camelia Fung, Eileen Wallace, William D. Prosper, Ashley E. Fishbein, Gregory Shea, Conor Hong, Rui Kahangi, Bitta Deng, John J. Gower, Adam C. Liu, Bin Campbell, Joshua D. Mazzilli, Sarah A. Beane, Jennifer E. Kadara, Humam Lenburg, Marc E. Spira, Avrum E. Aberle, Denise R. Krysan, Kostyantyn Dubinett, Steven M. Cancer Res Cancer Landscapes A greater understanding of molecular, cellular, and immunological changes during the early stages of lung adenocarcinoma development could improve diagnostic and therapeutic approaches in patients with pulmonary nodules at risk for lung cancer. To elucidate the immunopathogenesis of early lung tumorigenesis, we evaluated surgically resected pulmonary nodules representing the spectrum of early lung adenocarcinoma as well as associated normal lung tissues using single-cell RNA sequencing and validated the results by flow cytometry and multiplex immunofluorescence (MIF). Single-cell transcriptomics revealed a significant decrease in gene expression associated with cytolytic activities of tumor-infiltrating natural killer and natural killer T cells. This was accompanied by a reduction in effector T cells and an increase of CD4(+) regulatory T cells (Treg) in subsolid nodules. An independent set of resected pulmonary nodules consisting of both adenocarcinomas and associated premalignant lesions corroborated the early increment of Tregs in premalignant lesions compared with the associated normal lung tissues by MIF. Gene expression analysis indicated that cancer-associated alveolar type 2 cells and fibroblasts may contribute to the deregulation of the extracellular matrix, potentially affecting immune infiltration in subsolid nodules through ligand–receptor interactions. These findings suggest that there is a suppression of immune surveillance across the spectrum of early-stage lung adenocarcinoma. SIGNIFICANCE: Analysis of a spectrum of subsolid pulmonary nodules by single-cell RNA sequencing provides insights into the immune regulation and cell–cell interactions in the tumor microenvironment during early lung tumor development. American Association for Cancer Research 2023-10-02 2023-07-21 /pmc/articles/PMC10544016/ /pubmed/37477508 http://dx.doi.org/10.1158/0008-5472.CAN-23-0128 Text en ©2023 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 Cancer Landscapes
Yanagawa, Jane
Tran, Linh M.
Salehi-Rad, Ramin
Lim, Raymond J.
Dumitras, Camelia
Fung, Eileen
Wallace, William D.
Prosper, Ashley E.
Fishbein, Gregory
Shea, Conor
Hong, Rui
Kahangi, Bitta
Deng, John J.
Gower, Adam C.
Liu, Bin
Campbell, Joshua D.
Mazzilli, Sarah A.
Beane, Jennifer E.
Kadara, Humam
Lenburg, Marc E.
Spira, Avrum E.
Aberle, Denise R.
Krysan, Kostyantyn
Dubinett, Steven M.
Single-Cell Characterization of Pulmonary Nodules Implicates Suppression of Immunosurveillance across Early Stages of Lung Adenocarcinoma
title Single-Cell Characterization of Pulmonary Nodules Implicates Suppression of Immunosurveillance across Early Stages of Lung Adenocarcinoma
title_full Single-Cell Characterization of Pulmonary Nodules Implicates Suppression of Immunosurveillance across Early Stages of Lung Adenocarcinoma
title_fullStr Single-Cell Characterization of Pulmonary Nodules Implicates Suppression of Immunosurveillance across Early Stages of Lung Adenocarcinoma
title_full_unstemmed Single-Cell Characterization of Pulmonary Nodules Implicates Suppression of Immunosurveillance across Early Stages of Lung Adenocarcinoma
title_short Single-Cell Characterization of Pulmonary Nodules Implicates Suppression of Immunosurveillance across Early Stages of Lung Adenocarcinoma
title_sort single-cell characterization of pulmonary nodules implicates suppression of immunosurveillance across early stages of lung adenocarcinoma
topic Cancer Landscapes
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10544016/
https://www.ncbi.nlm.nih.gov/pubmed/37477508
http://dx.doi.org/10.1158/0008-5472.CAN-23-0128
work_keys_str_mv AT yanagawajane singlecellcharacterizationofpulmonarynodulesimplicatessuppressionofimmunosurveillanceacrossearlystagesoflungadenocarcinoma
AT tranlinhm singlecellcharacterizationofpulmonarynodulesimplicatessuppressionofimmunosurveillanceacrossearlystagesoflungadenocarcinoma
AT salehiradramin singlecellcharacterizationofpulmonarynodulesimplicatessuppressionofimmunosurveillanceacrossearlystagesoflungadenocarcinoma
AT limraymondj singlecellcharacterizationofpulmonarynodulesimplicatessuppressionofimmunosurveillanceacrossearlystagesoflungadenocarcinoma
AT dumitrascamelia singlecellcharacterizationofpulmonarynodulesimplicatessuppressionofimmunosurveillanceacrossearlystagesoflungadenocarcinoma
AT fungeileen singlecellcharacterizationofpulmonarynodulesimplicatessuppressionofimmunosurveillanceacrossearlystagesoflungadenocarcinoma
AT wallacewilliamd singlecellcharacterizationofpulmonarynodulesimplicatessuppressionofimmunosurveillanceacrossearlystagesoflungadenocarcinoma
AT prosperashleye singlecellcharacterizationofpulmonarynodulesimplicatessuppressionofimmunosurveillanceacrossearlystagesoflungadenocarcinoma
AT fishbeingregory singlecellcharacterizationofpulmonarynodulesimplicatessuppressionofimmunosurveillanceacrossearlystagesoflungadenocarcinoma
AT sheaconor singlecellcharacterizationofpulmonarynodulesimplicatessuppressionofimmunosurveillanceacrossearlystagesoflungadenocarcinoma
AT hongrui singlecellcharacterizationofpulmonarynodulesimplicatessuppressionofimmunosurveillanceacrossearlystagesoflungadenocarcinoma
AT kahangibitta singlecellcharacterizationofpulmonarynodulesimplicatessuppressionofimmunosurveillanceacrossearlystagesoflungadenocarcinoma
AT dengjohnj singlecellcharacterizationofpulmonarynodulesimplicatessuppressionofimmunosurveillanceacrossearlystagesoflungadenocarcinoma
AT goweradamc singlecellcharacterizationofpulmonarynodulesimplicatessuppressionofimmunosurveillanceacrossearlystagesoflungadenocarcinoma
AT liubin singlecellcharacterizationofpulmonarynodulesimplicatessuppressionofimmunosurveillanceacrossearlystagesoflungadenocarcinoma
AT campbelljoshuad singlecellcharacterizationofpulmonarynodulesimplicatessuppressionofimmunosurveillanceacrossearlystagesoflungadenocarcinoma
AT mazzillisaraha singlecellcharacterizationofpulmonarynodulesimplicatessuppressionofimmunosurveillanceacrossearlystagesoflungadenocarcinoma
AT beanejennifere singlecellcharacterizationofpulmonarynodulesimplicatessuppressionofimmunosurveillanceacrossearlystagesoflungadenocarcinoma
AT kadarahumam singlecellcharacterizationofpulmonarynodulesimplicatessuppressionofimmunosurveillanceacrossearlystagesoflungadenocarcinoma
AT lenburgmarce singlecellcharacterizationofpulmonarynodulesimplicatessuppressionofimmunosurveillanceacrossearlystagesoflungadenocarcinoma
AT spiraavrume singlecellcharacterizationofpulmonarynodulesimplicatessuppressionofimmunosurveillanceacrossearlystagesoflungadenocarcinoma
AT aberledeniser singlecellcharacterizationofpulmonarynodulesimplicatessuppressionofimmunosurveillanceacrossearlystagesoflungadenocarcinoma
AT krysankostyantyn singlecellcharacterizationofpulmonarynodulesimplicatessuppressionofimmunosurveillanceacrossearlystagesoflungadenocarcinoma
AT dubinettstevenm singlecellcharacterizationofpulmonarynodulesimplicatessuppressionofimmunosurveillanceacrossearlystagesoflungadenocarcinoma