Cargando…

Artemether Regulates Chemosensitivity to Doxorubicin via Regulation of B7-H3 in Human Neuroblastoma Cells

BACKGROUND: Artemether, originally used for malaria, exhibits potential therapeutic efficacy against several types of cancer, including gastric cancer, hepatocellular carcinoma, and gliomas. In this study, we investigated the role and mechanism of artemether on drug resistance of neuroblastoma cells...

Descripción completa

Detalles Bibliográficos
Autores principales: Tan, Wei-Qiang, Chen, Gang, Ye, Ming, Jia, Bing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Scientific Literature, Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5594998/
https://www.ncbi.nlm.nih.gov/pubmed/28866709
http://dx.doi.org/10.12659/MSM.902068
_version_ 1783263301074944000
author Tan, Wei-Qiang
Chen, Gang
Ye, Ming
Jia, Bing
author_facet Tan, Wei-Qiang
Chen, Gang
Ye, Ming
Jia, Bing
author_sort Tan, Wei-Qiang
collection PubMed
description BACKGROUND: Artemether, originally used for malaria, exhibits potential therapeutic efficacy against several types of cancer, including gastric cancer, hepatocellular carcinoma, and gliomas. In this study, we investigated the role and mechanism of artemether on drug resistance of neuroblastoma cells. MATERIAL/METHODS: Cell viability and proliferation were determined by CCK-8 and EdU incorporation assay, respectively. Gene expression was measured by real-time PCR and Western blot analysis. RESULTS: Our results revealed that artemether treatment remarkably inhibited the proliferation of neuroblastoma cell lines SH-SY5Y, SK-N-SH, and SK-N-BE2. In addition, co-treatment of tumor cells with artemether and doxorubicin significantly reduced cell viability and DNA synthesis compared with doxorubicin-treated cells. On the molecular level, we found that combined treatment with artemether and doxorubicin suppressed the expression of B7-H3 both at the mRNA and protein levels. In addition, artemether failed to sensitize tumor cells to doxorubicin in SH-SY5Y cells overexpressing B7-H3. CONCLUSIONS: Artemether-mediated inhibition of B7-H3 may contribute to doxorubicin sensitivity in neuroblastoma cells, suggesting that artemether could serve as a potential therapeutic option for neuroblastoma.
format Online
Article
Text
id pubmed-5594998
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher International Scientific Literature, Inc.
record_format MEDLINE/PubMed
spelling pubmed-55949982017-09-15 Artemether Regulates Chemosensitivity to Doxorubicin via Regulation of B7-H3 in Human Neuroblastoma Cells Tan, Wei-Qiang Chen, Gang Ye, Ming Jia, Bing Med Sci Monit Lab/In Vitro Research BACKGROUND: Artemether, originally used for malaria, exhibits potential therapeutic efficacy against several types of cancer, including gastric cancer, hepatocellular carcinoma, and gliomas. In this study, we investigated the role and mechanism of artemether on drug resistance of neuroblastoma cells. MATERIAL/METHODS: Cell viability and proliferation were determined by CCK-8 and EdU incorporation assay, respectively. Gene expression was measured by real-time PCR and Western blot analysis. RESULTS: Our results revealed that artemether treatment remarkably inhibited the proliferation of neuroblastoma cell lines SH-SY5Y, SK-N-SH, and SK-N-BE2. In addition, co-treatment of tumor cells with artemether and doxorubicin significantly reduced cell viability and DNA synthesis compared with doxorubicin-treated cells. On the molecular level, we found that combined treatment with artemether and doxorubicin suppressed the expression of B7-H3 both at the mRNA and protein levels. In addition, artemether failed to sensitize tumor cells to doxorubicin in SH-SY5Y cells overexpressing B7-H3. CONCLUSIONS: Artemether-mediated inhibition of B7-H3 may contribute to doxorubicin sensitivity in neuroblastoma cells, suggesting that artemether could serve as a potential therapeutic option for neuroblastoma. International Scientific Literature, Inc. 2017-09-03 /pmc/articles/PMC5594998/ /pubmed/28866709 http://dx.doi.org/10.12659/MSM.902068 Text en © Med Sci Monit, 2017 This work is licensed under Creative Common Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0 (https://creativecommons.org/licenses/by-nc-nd/4.0/) )
spellingShingle Lab/In Vitro Research
Tan, Wei-Qiang
Chen, Gang
Ye, Ming
Jia, Bing
Artemether Regulates Chemosensitivity to Doxorubicin via Regulation of B7-H3 in Human Neuroblastoma Cells
title Artemether Regulates Chemosensitivity to Doxorubicin via Regulation of B7-H3 in Human Neuroblastoma Cells
title_full Artemether Regulates Chemosensitivity to Doxorubicin via Regulation of B7-H3 in Human Neuroblastoma Cells
title_fullStr Artemether Regulates Chemosensitivity to Doxorubicin via Regulation of B7-H3 in Human Neuroblastoma Cells
title_full_unstemmed Artemether Regulates Chemosensitivity to Doxorubicin via Regulation of B7-H3 in Human Neuroblastoma Cells
title_short Artemether Regulates Chemosensitivity to Doxorubicin via Regulation of B7-H3 in Human Neuroblastoma Cells
title_sort artemether regulates chemosensitivity to doxorubicin via regulation of b7-h3 in human neuroblastoma cells
topic Lab/In Vitro Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5594998/
https://www.ncbi.nlm.nih.gov/pubmed/28866709
http://dx.doi.org/10.12659/MSM.902068
work_keys_str_mv AT tanweiqiang artemetherregulateschemosensitivitytodoxorubicinviaregulationofb7h3inhumanneuroblastomacells
AT chengang artemetherregulateschemosensitivitytodoxorubicinviaregulationofb7h3inhumanneuroblastomacells
AT yeming artemetherregulateschemosensitivitytodoxorubicinviaregulationofb7h3inhumanneuroblastomacells
AT jiabing artemetherregulateschemosensitivitytodoxorubicinviaregulationofb7h3inhumanneuroblastomacells