4.7 Article

Glycyrrhetinic Acid Triggers a Protective Autophagy by Activation of Extracellular Regulated Protein Kinases in Hepatocellular Carcinoma Cells

期刊

JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY
卷 62, 期 49, 页码 11910-11916

出版社

AMER CHEMICAL SOC
DOI: 10.1021/jf503968k

关键词

glycyrrhetinic acid; autophagy; hepatocellular carcinoma; ERK; protective

资金

  1. Macao Science and Technology Development Fund [074/2012/A3, 070/2013/A]
  2. University of Macau [MRG013/WYT/2013/ICMS, MRG008/LJJ2014/ICMS, CPG2014-00012-ICMS]
  3. National Cancer Institute of the National Institutes of Health [R00CA138914]
  4. National Natural Science Foundation [81372216]

向作者/读者索取更多资源

Glycyrrhetinic acid (GA), one of the main constituents of the famous Chinese medicinal herb and food additive licorice (Glycyrrhiza uralensis Fisch), has been indicated to possess potential anticancer effects and is widely utilized in hepatocellular carcinoma (HCC) targeted drug delivery systems (TDDS) due to the highly expressed target binding sites of GA on HCC cells. This study found that GA reduced the cell viability, increased the release of lactate dehydrogenase, and enhanced the expression of Bax, cleaved caspase-3, and LC3-II in HCC cells. The GA-triggered autophagy has been further confirmed by monodansylcadaverine staining as well as transmission electron microscopy analysis. The cell viability was obviously decreased whereas the expression of cleaved caspases was significantly increased when inhibition of autophagy by choloroquine or bafilomycin A1, suggesting that GA triggered a protective autophagy. Extracellular regulated protein kinase (ERK) was activated after treatment with GA in HepG2 cells and pretreatment with U0126 or PD98059, the MEK inhibitors, reversed GA-triggered autophagy as evidenced by decreased expression of LC3-II and formation of autophagosomes, respectively. Furthermore, GA-induced cell death and apoptosis were enhanced after pretreatment with PD98059. This is the first report that GA triggers a protective autophagy in HCC cells via activation of ERK, which might attenuate the anticancer effects of GA or chemotherapeutic drugs loaded with GA-modified TDDS.

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