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c-Met overexpression contributes to the acquired apoptotic resistance of nonadherent ovarian cancer cells through a cross talk mediated by phosphatidylinositol 3-kinase and extracellular signal-regulated kinase 1/2. | LitMetric

AI Article Synopsis

  • Ovarian cancer is the deadliest gynecologic cancer partly due to the ability of its tumor cells to evade a form of programmed cell death called anoikis, which contributes to their resistance to chemotherapy.
  • Researchers discovered that when ovarian cancer cells were grown in three-dimensional cultures, they became more resistant to both anoikis and chemotherapy drugs, cisplatin and paclitaxel, compared to traditional two-dimensional cultures.
  • Inhibiting the HGF receptor c-Met reversed this resistance and restored sensitivity to the drugs by disrupting key signaling pathways (PI3K/Akt and ERK1/2), involving Ras in the process, highlighting potential new treatment strategies.

Article Abstract

Ovarian cancer is the most lethal gynecologic cancer mainly because of widespread peritoneal dissemination and malignant ascites. Key to this is the capacity of tumor cells to escape suspension-induced apoptosis (anoikis), which also underlies their resistance to chemotherapy. Here, we used a nonadherent cell culture model to investigate the molecular mechanisms of apoptotic resistance of ovarian cancer cells that may mimic the chemoresistance found in solid tumors. We found that ovarian cancer cells acquired a remarkable resistance to anoikis and apoptosis induced by exposure to clinically relevant doses of two front-line chemotherapeutic drugs cisplatin and paclitaxel when grown in three-dimensional than monolayer cultures. Inhibition of the hepatocyte growth factor (HGF) receptor c-Met, which is frequently overexpressed in ovarian cancer, by a specific inhibitor or small interfering RNA blocked the acquired anoikis resistance and restored chemosensitivity in three-dimensional not in two-dimensional cultures. These effects were found to be dependent on both phosphatidylinositol 3-kinase (PI3K)/Akt and extracellular signal-regulated kinase (ERK) 1/2 signaling pathways. Inhibitors of PI3K/Akt abrogated ERK1/2 activation and its associated anoikis resistance in response to HGF, suggesting a signaling relay between these two pathways. Furthermore, we identified a central role of Ras as a mechanism of this cross talk. Interestingly, Ras did not lie upstream of PI3K/Akt, whereas PI3K/Akt signaling to ERK1/2 involved Ras. These findings shed new light on the apoptotic resistance mechanism of nonadherent ovarian cancer ascites cells and may have important clinical implications.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2814351PMC
http://dx.doi.org/10.1593/neo.91438DOI Listing

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