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https://doi.org/10.3390/molecules22091444
Title: | Andrographolide suppresses MV4-11 cell proliferation through the inhibition of FLT3 signaling, fatty acid synthesis and cellular iron uptake | Authors: | Chen, X Zhang, J Yuan, L Lay, Y Wong, Y.K Lim, T.K Ong, C.S Lin, Q Wang, J Hua, Z |
Keywords: | andrographolide antineoplastic agent CD135 antigen diterpene fatty acid FLT3 protein, human iron biosynthesis cell proliferation cell survival drug effect drug screening human metabolism protein synthesis signal transduction tumor cell line Antineoplastic Agents Cell Line, Tumor Cell Proliferation Cell Survival Diterpenes Drug Screening Assays, Antitumor Fatty Acids fms-Like Tyrosine Kinase 3 Humans Iron Protein Biosynthesis Signal Transduction |
Issue Date: | 2017 | Publisher: | MDPI AG | Citation: | Chen, X, Zhang, J, Yuan, L, Lay, Y, Wong, Y.K, Lim, T.K, Ong, C.S, Lin, Q, Wang, J, Hua, Z (2017). Andrographolide suppresses MV4-11 cell proliferation through the inhibition of FLT3 signaling, fatty acid synthesis and cellular iron uptake. Molecules 22 (9) : 1444. ScholarBank@NUS Repository. https://doi.org/10.3390/molecules22091444 | Abstract: | Background: Andrographolide (ADR), the main active component of Andrographis paniculata, displays anticancer activity in various cancer cell lines, among which leukemia cell lines exhibit the highest sensitivity to ADR. In particular, ADR was also reported to have reduced drug resistance in multidrug resistant cell lines. However, the mechanism of action (MOA) of ADR's anticancer and anti-drug-resistance activities remain elusive. Methods: In this study, we used the MV4-11 cell line, a FLT3 positive acute myeloid leukemia (AML) cell line that displays multidrug resistance, as our experimental system. We first evaluated the effect of ADR on MV4-11 cell proliferation. Then, a quantitative proteomics approach was applied to identify differentially expressed proteins in ADR-treated MV4-11 cells. Finally, cellular processes and signal pathways affected by ADR in MV4-11 cell were predicted with proteomic analysis and validated with in vitro assays. Results: ADR inhibits MV4-11 cell proliferation in a dose- and time-dependent manner. With a proteomic approach, we discovered that ADR inhibited fatty acid synthesis, cellular iron uptake and FLT3 signaling pathway in MV4-11 cells. Conclusions: ADR inhibits MV4-11 cell proliferation through inhibition of fatty acid synthesis, iron uptake and protein synthesis. Furthermore, ADR reduces drug resistance by blocking FLT3 signaling. © 2017 by the authors. | Source Title: | Molecules | URI: | https://scholarbank.nus.edu.sg/handle/10635/175150 | ISSN: | 1420-3049 | DOI: | 10.3390/molecules22091444 |
Appears in Collections: | Staff Publications Elements |
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