Cargando…

A Novel Muscarinic Antagonist R2HBJJ Inhibits Non-Small Cell Lung Cancer Cell Growth and Arrests the Cell Cycle in G0/G1

Lung cancers express the cholinergic autocrine loop, which facilitates the progression of cancer cells. The antagonists of mAChRs have been demonstrated to depress the growth of small cell lung cancers (SCLCs). In this study we intended to investigate the growth inhibitory effect of R2HBJJ, a novel...

Descripción completa

Detalles Bibliográficos
Autores principales: Hua, Nan, Wei, Xiaoli, Liu, Xiaoyan, Ma, Xiaoyun, He, Xinhua, Zhuo, Rengong, Zhao, Zhe, Wang, Liyun, Yan, Haitao, Zhong, Bohua, Zheng, Jianquan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3532118/
https://www.ncbi.nlm.nih.gov/pubmed/23285263
http://dx.doi.org/10.1371/journal.pone.0053170
_version_ 1782254253081886720
author Hua, Nan
Wei, Xiaoli
Liu, Xiaoyan
Ma, Xiaoyun
He, Xinhua
Zhuo, Rengong
Zhao, Zhe
Wang, Liyun
Yan, Haitao
Zhong, Bohua
Zheng, Jianquan
author_facet Hua, Nan
Wei, Xiaoli
Liu, Xiaoyan
Ma, Xiaoyun
He, Xinhua
Zhuo, Rengong
Zhao, Zhe
Wang, Liyun
Yan, Haitao
Zhong, Bohua
Zheng, Jianquan
author_sort Hua, Nan
collection PubMed
description Lung cancers express the cholinergic autocrine loop, which facilitates the progression of cancer cells. The antagonists of mAChRs have been demonstrated to depress the growth of small cell lung cancers (SCLCs). In this study we intended to investigate the growth inhibitory effect of R2HBJJ, a novel muscarinic antagonist, on non-small cell lung cancer (NSCLC) cells and the possible mechanisms. The competitive binding assay revealed that R2HBJJ had a high affinity to M3 and M1 AChRs. R2HBJJ presented a strong anticholinergic activity on carbachol-induced contraction of guinea-pig trachea. R2HBJJ markedly suppressed the growth of NSCLC cells, such as H1299, H460 and H157. In H1299 cells, both R2HBJJ and its leading compound R2-PHC displayed significant anti-proliferative activity as M3 receptor antagonist darifenacin. Exogenous replenish of ACh could attenuate R2HBJJ-induced growth inhibition. Silencing M3 receptor or ChAT by specific-siRNAs resulted in a growth inhibition of 55.5% and 37.9% on H1299 cells 96 h post transfection, respectively. Further studies revealed that treatment with R2HBJJ arrested the cell cycle in G0/G1 by down-regulation of cyclin D1-CDK4/6-Rb. Therefore, the current study reveals that NSCLC cells express an autocrine and paracrine cholinergic system which stimulates the growth of NSCLC cells. R2HBJJ, as a novel mAChRs antagonist, can block the local cholinergic loop by antagonizing predominantly M3 receptors and inhibit NSCLC cell growth, which suggest that M3 receptor antagonist might be a potential chemotherapeutic regimen for NSCLC.
format Online
Article
Text
id pubmed-3532118
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-35321182013-01-02 A Novel Muscarinic Antagonist R2HBJJ Inhibits Non-Small Cell Lung Cancer Cell Growth and Arrests the Cell Cycle in G0/G1 Hua, Nan Wei, Xiaoli Liu, Xiaoyan Ma, Xiaoyun He, Xinhua Zhuo, Rengong Zhao, Zhe Wang, Liyun Yan, Haitao Zhong, Bohua Zheng, Jianquan PLoS One Research Article Lung cancers express the cholinergic autocrine loop, which facilitates the progression of cancer cells. The antagonists of mAChRs have been demonstrated to depress the growth of small cell lung cancers (SCLCs). In this study we intended to investigate the growth inhibitory effect of R2HBJJ, a novel muscarinic antagonist, on non-small cell lung cancer (NSCLC) cells and the possible mechanisms. The competitive binding assay revealed that R2HBJJ had a high affinity to M3 and M1 AChRs. R2HBJJ presented a strong anticholinergic activity on carbachol-induced contraction of guinea-pig trachea. R2HBJJ markedly suppressed the growth of NSCLC cells, such as H1299, H460 and H157. In H1299 cells, both R2HBJJ and its leading compound R2-PHC displayed significant anti-proliferative activity as M3 receptor antagonist darifenacin. Exogenous replenish of ACh could attenuate R2HBJJ-induced growth inhibition. Silencing M3 receptor or ChAT by specific-siRNAs resulted in a growth inhibition of 55.5% and 37.9% on H1299 cells 96 h post transfection, respectively. Further studies revealed that treatment with R2HBJJ arrested the cell cycle in G0/G1 by down-regulation of cyclin D1-CDK4/6-Rb. Therefore, the current study reveals that NSCLC cells express an autocrine and paracrine cholinergic system which stimulates the growth of NSCLC cells. R2HBJJ, as a novel mAChRs antagonist, can block the local cholinergic loop by antagonizing predominantly M3 receptors and inhibit NSCLC cell growth, which suggest that M3 receptor antagonist might be a potential chemotherapeutic regimen for NSCLC. Public Library of Science 2012-12-28 /pmc/articles/PMC3532118/ /pubmed/23285263 http://dx.doi.org/10.1371/journal.pone.0053170 Text en © 2012 Hua et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Hua, Nan
Wei, Xiaoli
Liu, Xiaoyan
Ma, Xiaoyun
He, Xinhua
Zhuo, Rengong
Zhao, Zhe
Wang, Liyun
Yan, Haitao
Zhong, Bohua
Zheng, Jianquan
A Novel Muscarinic Antagonist R2HBJJ Inhibits Non-Small Cell Lung Cancer Cell Growth and Arrests the Cell Cycle in G0/G1
title A Novel Muscarinic Antagonist R2HBJJ Inhibits Non-Small Cell Lung Cancer Cell Growth and Arrests the Cell Cycle in G0/G1
title_full A Novel Muscarinic Antagonist R2HBJJ Inhibits Non-Small Cell Lung Cancer Cell Growth and Arrests the Cell Cycle in G0/G1
title_fullStr A Novel Muscarinic Antagonist R2HBJJ Inhibits Non-Small Cell Lung Cancer Cell Growth and Arrests the Cell Cycle in G0/G1
title_full_unstemmed A Novel Muscarinic Antagonist R2HBJJ Inhibits Non-Small Cell Lung Cancer Cell Growth and Arrests the Cell Cycle in G0/G1
title_short A Novel Muscarinic Antagonist R2HBJJ Inhibits Non-Small Cell Lung Cancer Cell Growth and Arrests the Cell Cycle in G0/G1
title_sort novel muscarinic antagonist r2hbjj inhibits non-small cell lung cancer cell growth and arrests the cell cycle in g0/g1
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3532118/
https://www.ncbi.nlm.nih.gov/pubmed/23285263
http://dx.doi.org/10.1371/journal.pone.0053170
work_keys_str_mv AT huanan anovelmuscarinicantagonistr2hbjjinhibitsnonsmallcelllungcancercellgrowthandarreststhecellcycleing0g1
AT weixiaoli anovelmuscarinicantagonistr2hbjjinhibitsnonsmallcelllungcancercellgrowthandarreststhecellcycleing0g1
AT liuxiaoyan anovelmuscarinicantagonistr2hbjjinhibitsnonsmallcelllungcancercellgrowthandarreststhecellcycleing0g1
AT maxiaoyun anovelmuscarinicantagonistr2hbjjinhibitsnonsmallcelllungcancercellgrowthandarreststhecellcycleing0g1
AT hexinhua anovelmuscarinicantagonistr2hbjjinhibitsnonsmallcelllungcancercellgrowthandarreststhecellcycleing0g1
AT zhuorengong anovelmuscarinicantagonistr2hbjjinhibitsnonsmallcelllungcancercellgrowthandarreststhecellcycleing0g1
AT zhaozhe anovelmuscarinicantagonistr2hbjjinhibitsnonsmallcelllungcancercellgrowthandarreststhecellcycleing0g1
AT wangliyun anovelmuscarinicantagonistr2hbjjinhibitsnonsmallcelllungcancercellgrowthandarreststhecellcycleing0g1
AT yanhaitao anovelmuscarinicantagonistr2hbjjinhibitsnonsmallcelllungcancercellgrowthandarreststhecellcycleing0g1
AT zhongbohua anovelmuscarinicantagonistr2hbjjinhibitsnonsmallcelllungcancercellgrowthandarreststhecellcycleing0g1
AT zhengjianquan anovelmuscarinicantagonistr2hbjjinhibitsnonsmallcelllungcancercellgrowthandarreststhecellcycleing0g1
AT huanan novelmuscarinicantagonistr2hbjjinhibitsnonsmallcelllungcancercellgrowthandarreststhecellcycleing0g1
AT weixiaoli novelmuscarinicantagonistr2hbjjinhibitsnonsmallcelllungcancercellgrowthandarreststhecellcycleing0g1
AT liuxiaoyan novelmuscarinicantagonistr2hbjjinhibitsnonsmallcelllungcancercellgrowthandarreststhecellcycleing0g1
AT maxiaoyun novelmuscarinicantagonistr2hbjjinhibitsnonsmallcelllungcancercellgrowthandarreststhecellcycleing0g1
AT hexinhua novelmuscarinicantagonistr2hbjjinhibitsnonsmallcelllungcancercellgrowthandarreststhecellcycleing0g1
AT zhuorengong novelmuscarinicantagonistr2hbjjinhibitsnonsmallcelllungcancercellgrowthandarreststhecellcycleing0g1
AT zhaozhe novelmuscarinicantagonistr2hbjjinhibitsnonsmallcelllungcancercellgrowthandarreststhecellcycleing0g1
AT wangliyun novelmuscarinicantagonistr2hbjjinhibitsnonsmallcelllungcancercellgrowthandarreststhecellcycleing0g1
AT yanhaitao novelmuscarinicantagonistr2hbjjinhibitsnonsmallcelllungcancercellgrowthandarreststhecellcycleing0g1
AT zhongbohua novelmuscarinicantagonistr2hbjjinhibitsnonsmallcelllungcancercellgrowthandarreststhecellcycleing0g1
AT zhengjianquan novelmuscarinicantagonistr2hbjjinhibitsnonsmallcelllungcancercellgrowthandarreststhecellcycleing0g1