4.7 Article

Dihydroartemisinin suppresses glycolysis of LNCaP cells by inhibiting PI3K/AKT pathway and downregulating HIF-1α expression

Journal

LIFE SCIENCES
Volume 233, Issue -, Pages -

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.lfs.2019.116730

Keywords

Dihydroartemisinin; Prostate cancer; Glycolysis; Akt/mTOR; HIF-1 alpha

Funding

  1. National Natural Science Foundation of China [31572262, C040301]
  2. Project Agreement for Science & Technology Development, Jilin Province [20170414022GH, 20190201148JC, 20160101198JC]
  3. Excellent Youth Talents Training programs of Jilin City [20156428]
  4. Jilin Provincial Health and Family Planning Commission [2015Q041]
  5. Jilin Collaborative Innovation Center for Antibody Engineering [20180623045TC]

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Aims: Dihydroartemisinin (DHA) exhibits potential anticancer activity. However, the biological functions of DHA in prostate cancer remain largely unexplored. In this study, we aim to investigate the anti-proliferative effect and glycolysis regulation of DHA on prostate cancer cell LNCaP. Main methods: Cell proliferative activity and apoptosis inducing were detected. The gene expression was detected by mRNA microarray and results were analyzed by GO and KEGG pathway database. Expressions of glycolysis key enzymes and PI3K/AKT/HIF-1 alpha were detected by Western blot. Key findings: Results indicated that DHA could inhibit the LNCaP cell proliferation considerably and induce cell apoptosis. mRNA microarray showed 1293 genes were upregulated and 2322 genes were downregulated. GO and KEGG enrichment analysis suggested that glycolysis pathway was correlated with DHA inhibited the proliferation on the LNCaP cell. Western blot results showed that DHA can decrease GLUT1 and regulatory enzymes of glycolytic pathway expression probably by suppressing the activity of the intracellular Akt/mTOR and HIF-1 alpha. Significance: Experimental validation results indicate that DHA treatment can inhibit the LNCaP cell proliferation and induce apoptosis, which may be related to glycolysis inhibition.

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