Artesunate activates the intrinsic apoptosis of HCT116 cells through the suppression of fatty acid synthesis and the NF-?B pathway
10.3390/molecules22081272
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sg-nus-scholar.10635-1751562024-04-04T01:11:30Z Artesunate activates the intrinsic apoptosis of HCT116 cells through the suppression of fatty acid synthesis and the NF-?B pathway Chen, X Wong, Y.K Lim, T.K Lim, W.H Lin, Q Wang, J Hua, Z BIOLOGICAL SCIENCES BIOLOGY (NU) PHYSIOLOGY artemisinin derivative artesunate fatty acid immunoglobulin enhancer binding protein reactive oxygen metabolite apoptosis biological model biosynthesis cell proliferation cell survival dose response drug effects HCT 116 cell line human metabolism mitochondrion procedures proteomics signal transduction Apoptosis Artemisinins Biosynthetic Pathways Cell Proliferation Cell Survival Dose-Response Relationship, Drug Fatty Acids HCT116 Cells Humans Mitochondria Models, Biological NF-kappa B Proteomics Reactive Oxygen Species Signal Transduction 10.3390/molecules22081272 Molecules 22 8 1272 2020-09-09T04:18:13Z 2020-09-09T04:18:13Z 2017 Article 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 1420-3049 https://scholarbank.nus.edu.sg/handle/10635/175156 MDPI AG Unpaywall 20200831 |
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artemisinin derivative artesunate fatty acid immunoglobulin enhancer binding protein reactive oxygen metabolite apoptosis biological model biosynthesis cell proliferation cell survival dose response drug effects HCT 116 cell line human metabolism mitochondrion procedures proteomics signal transduction Apoptosis Artemisinins Biosynthetic Pathways Cell Proliferation Cell Survival Dose-Response Relationship, Drug Fatty Acids HCT116 Cells Humans Mitochondria Models, Biological NF-kappa B Proteomics Reactive Oxygen Species Signal Transduction |
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artemisinin derivative artesunate fatty acid immunoglobulin enhancer binding protein reactive oxygen metabolite apoptosis biological model biosynthesis cell proliferation cell survival dose response drug effects HCT 116 cell line human metabolism mitochondrion procedures proteomics signal transduction Apoptosis Artemisinins Biosynthetic Pathways Cell Proliferation Cell Survival Dose-Response Relationship, Drug Fatty Acids HCT116 Cells Humans Mitochondria Models, Biological NF-kappa B Proteomics Reactive Oxygen Species Signal Transduction Chen, X Wong, Y.K Lim, T.K Lim, W.H Lin, Q Wang, J Hua, Z Artesunate activates the intrinsic apoptosis of HCT116 cells through the suppression of fatty acid synthesis and the NF-?B pathway |
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10.3390/molecules22081272 |
author2 |
BIOLOGICAL SCIENCES |
author_facet |
BIOLOGICAL SCIENCES Chen, X Wong, Y.K Lim, T.K Lim, W.H Lin, Q Wang, J Hua, Z |
format |
Article |
author |
Chen, X Wong, Y.K Lim, T.K Lim, W.H Lin, Q Wang, J Hua, Z |
author_sort |
Chen, X |
title |
Artesunate activates the intrinsic apoptosis of HCT116 cells through the suppression of fatty acid synthesis and the NF-?B pathway |
title_short |
Artesunate activates the intrinsic apoptosis of HCT116 cells through the suppression of fatty acid synthesis and the NF-?B pathway |
title_full |
Artesunate activates the intrinsic apoptosis of HCT116 cells through the suppression of fatty acid synthesis and the NF-?B pathway |
title_fullStr |
Artesunate activates the intrinsic apoptosis of HCT116 cells through the suppression of fatty acid synthesis and the NF-?B pathway |
title_full_unstemmed |
Artesunate activates the intrinsic apoptosis of HCT116 cells through the suppression of fatty acid synthesis and the NF-?B pathway |
title_sort |
artesunate activates the intrinsic apoptosis of hct116 cells through the suppression of fatty acid synthesis and the nf-?b pathway |
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MDPI AG |
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2020 |
url |
https://scholarbank.nus.edu.sg/handle/10635/175156 |
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1795374369087684608 |