4.6 Article

Autophagy contributes to gefitinib-induced glioma cell growth inhibition

Journal

EXPERIMENTAL CELL RESEARCH
Volume 327, Issue 1, Pages 102-112

Publisher

ELSEVIER INC
DOI: 10.1016/j.yexcr.2014.05.011

Keywords

AMPK; Autophagy; EGFR; Gefitinib; Glioma

Funding

  1. Central Region Hospital Alliance [100-009]
  2. Department of Health, Fong Yuan Hospital [101-005, 102-011]
  3. Taichung Veterans General Hospital, Taiwan, ROC [TCVGH-T987805]

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Epidermal growth factor receptor tyrosine kinase inhibitors, including gefitinib, have been evaluated in patients with malignant gliomas. However, the molecular mechanisms involved in gefitinib-mediated anticancer effects against glioma are incompletely understood. In the present study, the cytostatic potential of gefitinib was demonstrated by the inhibition of glioma cell growth, long-term clonogenic survival, and xenograft tumor growth. The cytostatic consequences were accompanied by autophagy, as evidenced by monodansylcadaverine staining of acidic vesicle formation, conversion of microtubule-associated protein-1 light chain 3-II (LC3-II), degradation of p62, punctate pattern of GFP-LC3, and conversion of GFP-LC3 to cleaved-GFP. Autophagy inhibitor 3-methyladenosine and chloroquine and genetic silencing of LC3 or Beclin 1 attenuated gefitinib-induced growth inhibition. Gefitinib-induced autophagy was not accompanied by the disruption of the Akt/mammalian target of rapamycin signaling. Instead, the activation of liver kinase-B1/AMP-activated protein kinase (AMPK) signaling correlated well with the induction of autophagy and growth inhibition caused by gefitinib. Silencing of AMPK suppressed gefitinib-induced autophagy and growth inhibition. The crucial role of AMPK activation in inducing glioma autophagy and growth inhibition was further supported by the actions of AMP mimetic AICAR. Gefitinib was shown to be capable of reducing the proliferation of glioma cells, presumably by autophagic mechanisms involving AMPK activation. (C) 2014 Elsevier Inc. All rights reserved.

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