Cargando…
α‐Mangostin suppresses the de novo lipogenesis and enhances the chemotherapeutic response to gemcitabine in gallbladder carcinoma cells via targeting the AMPK/SREBP1 cascades
High rates of de novo lipid synthesis have been discovered in certain kinds of tumours, including gallbladder cancer (GBC). Unlike several other tumours, GBC is highly insensitive to standard adjuvant therapy, which makes its treatment even more challenging. Although several potential targets and si...
Autores principales: | , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
John Wiley and Sons Inc.
2019
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6933365/ https://www.ncbi.nlm.nih.gov/pubmed/31762191 http://dx.doi.org/10.1111/jcmm.14785 |
_version_ | 1783483197901766656 |
---|---|
author | Shi, Yu Fan, Yangwei Hu, Yuan Jing, Jiayu Wang, Chuying Wu, Yinying Geng, Qianqian Dong, Xuyuan Li, Enxiao Dong, Danfeng |
author_facet | Shi, Yu Fan, Yangwei Hu, Yuan Jing, Jiayu Wang, Chuying Wu, Yinying Geng, Qianqian Dong, Xuyuan Li, Enxiao Dong, Danfeng |
author_sort | Shi, Yu |
collection | PubMed |
description | High rates of de novo lipid synthesis have been discovered in certain kinds of tumours, including gallbladder cancer (GBC). Unlike several other tumours, GBC is highly insensitive to standard adjuvant therapy, which makes its treatment even more challenging. Although several potential targets and signalling pathways underlying GBC chemoresistance have been revealed, the precise mechanisms are still elusive. In this study, we found that α‐Mangostin, as a dietary xanthone, repressed the proliferation and clone formation ability, induced cell cycle arrest and the apoptosis, and suppressed de novo lipogenesis of gallbladder cancer cells. The underlying mechanisms might involve the activation of AMPK and, therefore, the suppression of SREBP1 nuclear translocation to blunt de novo lipogenesis. Furthermore, SREBP1 silencing by siRNA or α‐mangostin enhanced the sensitivity of gemcitabine in gallbladder cancer cells. In vivo studies also displayed that MA or gemcitabine administration to nude mice harbouring NOZ tumours can reduce tumour growth, and moreover, MA administration can significantly potentiate gemcitabine‐induced inhibition of tumour growth. Corroborating in vitro findings, tumours from mice treated with MA or gemcitabine alone showed decreased levels of proliferation with reduced Ki‐67 expression and elevated apoptosis confirmed by TUNEL staining, furthermore, the proliferation inhibition and apoptosis up‐regulation were obviously observed in MA combined with gemcitabine treatment group. Therefore, inhibiting de novo lipogenesis via targeting the AMPK/SREBP1 signalling by MA might provide insights into a potential strategy for sensitizing GBC cells to chemotherapy. |
format | Online Article Text |
id | pubmed-6933365 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2019 |
publisher | John Wiley and Sons Inc. |
record_format | MEDLINE/PubMed |
spelling | pubmed-69333652020-01-01 α‐Mangostin suppresses the de novo lipogenesis and enhances the chemotherapeutic response to gemcitabine in gallbladder carcinoma cells via targeting the AMPK/SREBP1 cascades Shi, Yu Fan, Yangwei Hu, Yuan Jing, Jiayu Wang, Chuying Wu, Yinying Geng, Qianqian Dong, Xuyuan Li, Enxiao Dong, Danfeng J Cell Mol Med Original Articles High rates of de novo lipid synthesis have been discovered in certain kinds of tumours, including gallbladder cancer (GBC). Unlike several other tumours, GBC is highly insensitive to standard adjuvant therapy, which makes its treatment even more challenging. Although several potential targets and signalling pathways underlying GBC chemoresistance have been revealed, the precise mechanisms are still elusive. In this study, we found that α‐Mangostin, as a dietary xanthone, repressed the proliferation and clone formation ability, induced cell cycle arrest and the apoptosis, and suppressed de novo lipogenesis of gallbladder cancer cells. The underlying mechanisms might involve the activation of AMPK and, therefore, the suppression of SREBP1 nuclear translocation to blunt de novo lipogenesis. Furthermore, SREBP1 silencing by siRNA or α‐mangostin enhanced the sensitivity of gemcitabine in gallbladder cancer cells. In vivo studies also displayed that MA or gemcitabine administration to nude mice harbouring NOZ tumours can reduce tumour growth, and moreover, MA administration can significantly potentiate gemcitabine‐induced inhibition of tumour growth. Corroborating in vitro findings, tumours from mice treated with MA or gemcitabine alone showed decreased levels of proliferation with reduced Ki‐67 expression and elevated apoptosis confirmed by TUNEL staining, furthermore, the proliferation inhibition and apoptosis up‐regulation were obviously observed in MA combined with gemcitabine treatment group. Therefore, inhibiting de novo lipogenesis via targeting the AMPK/SREBP1 signalling by MA might provide insights into a potential strategy for sensitizing GBC cells to chemotherapy. John Wiley and Sons Inc. 2019-11-25 2020-01 /pmc/articles/PMC6933365/ /pubmed/31762191 http://dx.doi.org/10.1111/jcmm.14785 Text en © 2019 The Authors. Journal of Cellular and Molecular Medicine published by John Wiley & Sons Ltd and Foundation for Cellular and Molecular Medicine. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Original Articles Shi, Yu Fan, Yangwei Hu, Yuan Jing, Jiayu Wang, Chuying Wu, Yinying Geng, Qianqian Dong, Xuyuan Li, Enxiao Dong, Danfeng α‐Mangostin suppresses the de novo lipogenesis and enhances the chemotherapeutic response to gemcitabine in gallbladder carcinoma cells via targeting the AMPK/SREBP1 cascades |
title | α‐Mangostin suppresses the de novo lipogenesis and enhances the chemotherapeutic response to gemcitabine in gallbladder carcinoma cells via targeting the AMPK/SREBP1 cascades |
title_full | α‐Mangostin suppresses the de novo lipogenesis and enhances the chemotherapeutic response to gemcitabine in gallbladder carcinoma cells via targeting the AMPK/SREBP1 cascades |
title_fullStr | α‐Mangostin suppresses the de novo lipogenesis and enhances the chemotherapeutic response to gemcitabine in gallbladder carcinoma cells via targeting the AMPK/SREBP1 cascades |
title_full_unstemmed | α‐Mangostin suppresses the de novo lipogenesis and enhances the chemotherapeutic response to gemcitabine in gallbladder carcinoma cells via targeting the AMPK/SREBP1 cascades |
title_short | α‐Mangostin suppresses the de novo lipogenesis and enhances the chemotherapeutic response to gemcitabine in gallbladder carcinoma cells via targeting the AMPK/SREBP1 cascades |
title_sort | α‐mangostin suppresses the de novo lipogenesis and enhances the chemotherapeutic response to gemcitabine in gallbladder carcinoma cells via targeting the ampk/srebp1 cascades |
topic | Original Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6933365/ https://www.ncbi.nlm.nih.gov/pubmed/31762191 http://dx.doi.org/10.1111/jcmm.14785 |
work_keys_str_mv | AT shiyu amangostinsuppressesthedenovolipogenesisandenhancesthechemotherapeuticresponsetogemcitabineingallbladdercarcinomacellsviatargetingtheampksrebp1cascades AT fanyangwei amangostinsuppressesthedenovolipogenesisandenhancesthechemotherapeuticresponsetogemcitabineingallbladdercarcinomacellsviatargetingtheampksrebp1cascades AT huyuan amangostinsuppressesthedenovolipogenesisandenhancesthechemotherapeuticresponsetogemcitabineingallbladdercarcinomacellsviatargetingtheampksrebp1cascades AT jingjiayu amangostinsuppressesthedenovolipogenesisandenhancesthechemotherapeuticresponsetogemcitabineingallbladdercarcinomacellsviatargetingtheampksrebp1cascades AT wangchuying amangostinsuppressesthedenovolipogenesisandenhancesthechemotherapeuticresponsetogemcitabineingallbladdercarcinomacellsviatargetingtheampksrebp1cascades AT wuyinying amangostinsuppressesthedenovolipogenesisandenhancesthechemotherapeuticresponsetogemcitabineingallbladdercarcinomacellsviatargetingtheampksrebp1cascades AT gengqianqian amangostinsuppressesthedenovolipogenesisandenhancesthechemotherapeuticresponsetogemcitabineingallbladdercarcinomacellsviatargetingtheampksrebp1cascades AT dongxuyuan amangostinsuppressesthedenovolipogenesisandenhancesthechemotherapeuticresponsetogemcitabineingallbladdercarcinomacellsviatargetingtheampksrebp1cascades AT lienxiao amangostinsuppressesthedenovolipogenesisandenhancesthechemotherapeuticresponsetogemcitabineingallbladdercarcinomacellsviatargetingtheampksrebp1cascades AT dongdanfeng amangostinsuppressesthedenovolipogenesisandenhancesthechemotherapeuticresponsetogemcitabineingallbladdercarcinomacellsviatargetingtheampksrebp1cascades |