Flubendazole demonstrates valid antitumor effects by inhibiting STAT3 and activating autophagy

Abstract Background Signal transducer and activator of transcription 3 (STAT3) is an oncogene, which upregulates in approximately 70% of human cancers. Autophagy is an evolutionarily conserved process which maintains cellular homeostasis and eliminates damaged cellular components. Moreover, the STAT...

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Main Authors: Shichong Lin, Lehe Yang, Yulei Yao, Lingyuan Xu, Youqun Xiang, Haiyang Zhao, Liangxing Wang, Zhigui Zuo, Xiaoying Huang, Chengguang Zhao
Format: Article
Language:English
Published: BMC 2019-07-01
Series:Journal of Experimental & Clinical Cancer Research
Subjects:
Online Access:http://link.springer.com/article/10.1186/s13046-019-1303-z
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spelling doaj-3e2c66b97c604ee1b9fbb07e1c470dc92020-11-25T03:44:42ZengBMCJournal of Experimental & Clinical Cancer Research1756-99662019-07-0138111310.1186/s13046-019-1303-zFlubendazole demonstrates valid antitumor effects by inhibiting STAT3 and activating autophagyShichong Lin0Lehe Yang1Yulei Yao2Lingyuan Xu3Youqun Xiang4Haiyang Zhao5Liangxing Wang6Zhigui Zuo7Xiaoying Huang8Chengguang Zhao9School of Pharmaceutical Sciences, Wenzhou Medical UniversitySchool of Pharmaceutical Sciences, Wenzhou Medical UniversitySchool of Pharmaceutical Sciences, Wenzhou Medical UniversitySchool of Pharmaceutical Sciences, Wenzhou Medical UniversityThe First Affiliated Hospital, Wenzhou Medical UniversityThe Institute of Life Sciences, Wenzhou UniversityThe First Affiliated Hospital, Wenzhou Medical UniversityThe First Affiliated Hospital, Wenzhou Medical UniversityThe First Affiliated Hospital, Wenzhou Medical UniversitySchool of Pharmaceutical Sciences, Wenzhou Medical UniversityAbstract Background Signal transducer and activator of transcription 3 (STAT3) is an oncogene, which upregulates in approximately 70% of human cancers. Autophagy is an evolutionarily conserved process which maintains cellular homeostasis and eliminates damaged cellular components. Moreover, the STAT3 signaling pathway, which may be triggered by cancer cells, has been implicated in the autophagic process. Methods In this study, we found that the anthelmintic flubendazole exerts potent antitumor activity in three human colorectal cancer (CRC) cell lines and in the nude mouse model. The inhibition of cell proliferation in vitro by flubendazole was evaluated using a clonogenic assay and the MTT assay. Western blot analysis, flow cytometry analysis, siRNA growth experiment and cytoplasmic and nuclear protein extraction were used to investigate the mechanisms of inhibiting STAT3 signaling and activation of autophagy induced by flubendazole. Additionally, the expression of STAT3 and mTOR was analyzed in paired colorectal cancer and normal tissues collected from clinical patients. Results Flubendazole blocked the IL6-induced nuclear translocation of STAT3, which led to inhibition of the transcription of STAT3 target genes, such as MCL1, VEGF and BIRC5. In addition, flubendazole also reduced the expression of P-mTOR, P62, BCL2, and upregulated Beclin1 and LC3-I/II, which are major autophagy-related genes. These processes induced potent cell apoptosis in CRC cells. In addition, flubendazole displayed a synergistic effect with the chemotherapeutic agent 5-fluorouracil in the treatment of CRC. Conclusions Taken together, these results indicate that flubendazole exerts antitumor activities by blocking STAT3 signaling and inevitably affects the autophagy pathway. Flubendazole maybe a novel anticancer drug and offers a distinctive therapeutic strategy in neoadjuvant chemotherapy of CRC.http://link.springer.com/article/10.1186/s13046-019-1303-zFlubendazoleColorectal cancerSTAT3AutophagyApoptosis
collection DOAJ
language English
format Article
sources DOAJ
author Shichong Lin
Lehe Yang
Yulei Yao
Lingyuan Xu
Youqun Xiang
Haiyang Zhao
Liangxing Wang
Zhigui Zuo
Xiaoying Huang
Chengguang Zhao
spellingShingle Shichong Lin
Lehe Yang
Yulei Yao
Lingyuan Xu
Youqun Xiang
Haiyang Zhao
Liangxing Wang
Zhigui Zuo
Xiaoying Huang
Chengguang Zhao
Flubendazole demonstrates valid antitumor effects by inhibiting STAT3 and activating autophagy
Journal of Experimental & Clinical Cancer Research
Flubendazole
Colorectal cancer
STAT3
Autophagy
Apoptosis
author_facet Shichong Lin
Lehe Yang
Yulei Yao
Lingyuan Xu
Youqun Xiang
Haiyang Zhao
Liangxing Wang
Zhigui Zuo
Xiaoying Huang
Chengguang Zhao
author_sort Shichong Lin
title Flubendazole demonstrates valid antitumor effects by inhibiting STAT3 and activating autophagy
title_short Flubendazole demonstrates valid antitumor effects by inhibiting STAT3 and activating autophagy
title_full Flubendazole demonstrates valid antitumor effects by inhibiting STAT3 and activating autophagy
title_fullStr Flubendazole demonstrates valid antitumor effects by inhibiting STAT3 and activating autophagy
title_full_unstemmed Flubendazole demonstrates valid antitumor effects by inhibiting STAT3 and activating autophagy
title_sort flubendazole demonstrates valid antitumor effects by inhibiting stat3 and activating autophagy
publisher BMC
series Journal of Experimental & Clinical Cancer Research
issn 1756-9966
publishDate 2019-07-01
description Abstract Background Signal transducer and activator of transcription 3 (STAT3) is an oncogene, which upregulates in approximately 70% of human cancers. Autophagy is an evolutionarily conserved process which maintains cellular homeostasis and eliminates damaged cellular components. Moreover, the STAT3 signaling pathway, which may be triggered by cancer cells, has been implicated in the autophagic process. Methods In this study, we found that the anthelmintic flubendazole exerts potent antitumor activity in three human colorectal cancer (CRC) cell lines and in the nude mouse model. The inhibition of cell proliferation in vitro by flubendazole was evaluated using a clonogenic assay and the MTT assay. Western blot analysis, flow cytometry analysis, siRNA growth experiment and cytoplasmic and nuclear protein extraction were used to investigate the mechanisms of inhibiting STAT3 signaling and activation of autophagy induced by flubendazole. Additionally, the expression of STAT3 and mTOR was analyzed in paired colorectal cancer and normal tissues collected from clinical patients. Results Flubendazole blocked the IL6-induced nuclear translocation of STAT3, which led to inhibition of the transcription of STAT3 target genes, such as MCL1, VEGF and BIRC5. In addition, flubendazole also reduced the expression of P-mTOR, P62, BCL2, and upregulated Beclin1 and LC3-I/II, which are major autophagy-related genes. These processes induced potent cell apoptosis in CRC cells. In addition, flubendazole displayed a synergistic effect with the chemotherapeutic agent 5-fluorouracil in the treatment of CRC. Conclusions Taken together, these results indicate that flubendazole exerts antitumor activities by blocking STAT3 signaling and inevitably affects the autophagy pathway. Flubendazole maybe a novel anticancer drug and offers a distinctive therapeutic strategy in neoadjuvant chemotherapy of CRC.
topic Flubendazole
Colorectal cancer
STAT3
Autophagy
Apoptosis
url http://link.springer.com/article/10.1186/s13046-019-1303-z
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