Please use this identifier to cite or link to this item:
https://doi.org/10.3390/molecules22081272
DC Field | Value | |
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dc.title | Artesunate activates the intrinsic apoptosis of HCT116 cells through the suppression of fatty acid synthesis and the NF-?B pathway | |
dc.contributor.author | Chen, X | |
dc.contributor.author | Wong, Y.K | |
dc.contributor.author | Lim, T.K | |
dc.contributor.author | Lim, W.H | |
dc.contributor.author | Lin, Q | |
dc.contributor.author | Wang, J | |
dc.contributor.author | Hua, Z | |
dc.date.accessioned | 2020-09-09T04:18:13Z | |
dc.date.available | 2020-09-09T04:18:13Z | |
dc.date.issued | 2017 | |
dc.identifier.citation | Chen, X, Wong, Y.K, Lim, T.K, Lim, W.H, Lin, Q, Wang, J, Hua, Z (2017). Artesunate activates the intrinsic apoptosis of HCT116 cells through the suppression of fatty acid synthesis and the NF-?B pathway. Molecules 22 (8) : 1272. ScholarBank@NUS Repository. https://doi.org/10.3390/molecules22081272 | |
dc.identifier.issn | 1420-3049 | |
dc.identifier.uri | https://scholarbank.nus.edu.sg/handle/10635/175156 | |
dc.description.abstract | The artemisinin compounds, which are well-known for their potent therapeutic antimalarial activity, possess in vivo and in vitro antitumor effects. Although the anticancer effect of artemisinin compounds has been extensively reported, the precise mechanisms underlying its cytotoxicity remain under intensive study. In the present study, a high-throughput quantitative proteomics approach was applied to identify differentially expressed proteins of HCT116 colorectal cancer cell line with artesunate (ART) treatment. Through Ingenuity Pathway Analysis, we discovered that the top-ranked ART-regulated biological pathways are abrogation of fatty acid biosynthetic pathway and mitochondrial dysfunction. Subsequent assays showed that ART inhibits HCT116 cell proliferation through suppressing the fatty acid biosynthetic pathway and activating the mitochondrial apoptosis pathway. In addition, ART also regulates several proteins that are involved in NF-?B pathway, and our subsequent assays showed that ART suppresses the NF-?B pathway. These proteomic findings will contribute to improving our understanding of the underlying molecular mechanisms of ART for its therapeutic cytotoxic effect towards cancer cells. © 2017 by the authors. | |
dc.publisher | MDPI AG | |
dc.source | Unpaywall 20200831 | |
dc.subject | artemisinin derivative | |
dc.subject | artesunate | |
dc.subject | fatty acid | |
dc.subject | immunoglobulin enhancer binding protein | |
dc.subject | reactive oxygen metabolite | |
dc.subject | apoptosis | |
dc.subject | biological model | |
dc.subject | biosynthesis | |
dc.subject | cell proliferation | |
dc.subject | cell survival | |
dc.subject | dose response | |
dc.subject | drug effects | |
dc.subject | HCT 116 cell line | |
dc.subject | human | |
dc.subject | metabolism | |
dc.subject | mitochondrion | |
dc.subject | procedures | |
dc.subject | proteomics | |
dc.subject | signal transduction | |
dc.subject | Apoptosis | |
dc.subject | Artemisinins | |
dc.subject | Biosynthetic Pathways | |
dc.subject | Cell Proliferation | |
dc.subject | Cell Survival | |
dc.subject | Dose-Response Relationship, Drug | |
dc.subject | Fatty Acids | |
dc.subject | HCT116 Cells | |
dc.subject | Humans | |
dc.subject | Mitochondria | |
dc.subject | Models, Biological | |
dc.subject | NF-kappa B | |
dc.subject | Proteomics | |
dc.subject | Reactive Oxygen Species | |
dc.subject | Signal Transduction | |
dc.type | Article | |
dc.contributor.department | BIOLOGICAL SCIENCES | |
dc.contributor.department | BIOLOGY (NU) | |
dc.contributor.department | PHYSIOLOGY | |
dc.description.doi | 10.3390/molecules22081272 | |
dc.description.sourcetitle | Molecules | |
dc.description.volume | 22 | |
dc.description.issue | 8 | |
dc.description.page | 1272 | |
dc.published.state | Published | |
Appears in Collections: | Staff Publications Elements |
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