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Up-regulation of exosomal miR-125a in pneumoconiosis inhibits lung cancer development by suppressing expressions of EZH2 and hnRNPK

Exposure to nanoparticles may lead to pneumoconiosis and lung cancer; however, whether patients suffering from pneumoconiosis also face a high risk of lung cancer has been under debate for decades. Recently, exosomes have been found to play critical roles in many diseases via intercellular cargo tra...

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Autores principales: Zhang, Lin, Li, Jiangfeng, Hao, Changfu, Guo, Wei, Wang, Di, Zhang, Jianhui, Zhao, Youliang, Duan, Shuyin, Yao, Wu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9083100/
https://www.ncbi.nlm.nih.gov/pubmed/35541090
http://dx.doi.org/10.1039/c8ra03081b
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author Zhang, Lin
Li, Jiangfeng
Hao, Changfu
Guo, Wei
Wang, Di
Zhang, Jianhui
Zhao, Youliang
Duan, Shuyin
Yao, Wu
author_facet Zhang, Lin
Li, Jiangfeng
Hao, Changfu
Guo, Wei
Wang, Di
Zhang, Jianhui
Zhao, Youliang
Duan, Shuyin
Yao, Wu
author_sort Zhang, Lin
collection PubMed
description Exposure to nanoparticles may lead to pneumoconiosis and lung cancer; however, whether patients suffering from pneumoconiosis also face a high risk of lung cancer has been under debate for decades. Recently, exosomes have been found to play critical roles in many diseases via intercellular cargo transportation, which has provided a new insight into the mechanistic investigation of nanoparticle-induced respiratory disorders. Herein, we isolated exosomes from the venous blood of patients with pneumoconiosis and healthy controls and then, we profiled the expression signatures of exosomal miRNAs using high-throughput sequencing technology. A total of 14 aberrantly expressed miRNAs were identified and used to process target gene prediction and functional annotation. Specially, miR-125a along with its target genes EZH2 and hnRNPK was found to play a significant role in the development of lung cancer. We then adopted a series of cellular experiments to validate the role of miR-125a in lung cancer. From the results obtained, we found that the suppression of EZH2 and hnRNPK by high levels of miR-125a inhibited the development of nanoparticle-induced lung adenocarcinoma, which contributed to the clarification of the relation between pneumoconiosis and lung cancer.
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spelling pubmed-90831002022-05-09 Up-regulation of exosomal miR-125a in pneumoconiosis inhibits lung cancer development by suppressing expressions of EZH2 and hnRNPK Zhang, Lin Li, Jiangfeng Hao, Changfu Guo, Wei Wang, Di Zhang, Jianhui Zhao, Youliang Duan, Shuyin Yao, Wu RSC Adv Chemistry Exposure to nanoparticles may lead to pneumoconiosis and lung cancer; however, whether patients suffering from pneumoconiosis also face a high risk of lung cancer has been under debate for decades. Recently, exosomes have been found to play critical roles in many diseases via intercellular cargo transportation, which has provided a new insight into the mechanistic investigation of nanoparticle-induced respiratory disorders. Herein, we isolated exosomes from the venous blood of patients with pneumoconiosis and healthy controls and then, we profiled the expression signatures of exosomal miRNAs using high-throughput sequencing technology. A total of 14 aberrantly expressed miRNAs were identified and used to process target gene prediction and functional annotation. Specially, miR-125a along with its target genes EZH2 and hnRNPK was found to play a significant role in the development of lung cancer. We then adopted a series of cellular experiments to validate the role of miR-125a in lung cancer. From the results obtained, we found that the suppression of EZH2 and hnRNPK by high levels of miR-125a inhibited the development of nanoparticle-induced lung adenocarcinoma, which contributed to the clarification of the relation between pneumoconiosis and lung cancer. The Royal Society of Chemistry 2018-07-25 /pmc/articles/PMC9083100/ /pubmed/35541090 http://dx.doi.org/10.1039/c8ra03081b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Zhang, Lin
Li, Jiangfeng
Hao, Changfu
Guo, Wei
Wang, Di
Zhang, Jianhui
Zhao, Youliang
Duan, Shuyin
Yao, Wu
Up-regulation of exosomal miR-125a in pneumoconiosis inhibits lung cancer development by suppressing expressions of EZH2 and hnRNPK
title Up-regulation of exosomal miR-125a in pneumoconiosis inhibits lung cancer development by suppressing expressions of EZH2 and hnRNPK
title_full Up-regulation of exosomal miR-125a in pneumoconiosis inhibits lung cancer development by suppressing expressions of EZH2 and hnRNPK
title_fullStr Up-regulation of exosomal miR-125a in pneumoconiosis inhibits lung cancer development by suppressing expressions of EZH2 and hnRNPK
title_full_unstemmed Up-regulation of exosomal miR-125a in pneumoconiosis inhibits lung cancer development by suppressing expressions of EZH2 and hnRNPK
title_short Up-regulation of exosomal miR-125a in pneumoconiosis inhibits lung cancer development by suppressing expressions of EZH2 and hnRNPK
title_sort up-regulation of exosomal mir-125a in pneumoconiosis inhibits lung cancer development by suppressing expressions of ezh2 and hnrnpk
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9083100/
https://www.ncbi.nlm.nih.gov/pubmed/35541090
http://dx.doi.org/10.1039/c8ra03081b
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