Abstract

Many anti-cancer drugs, including paclitaxel and etoposide, have originated and been developed from natural products, and traditional herbal medicines have fewer adverse effects and lesser toxicity than anti-tumor reagents. Therefore, we developed a novel complex herbal medicine, JI017, which mediates endoplasmic reticulum (ER) stress and apoptosis through the Nox4–PERK–CHOP signaling pathway in ovarian cancer cells. JI017 treatment increases the expression of GRP78, ATF4, and CHOP and the phosphorylation of PERK and eIF2α via the upregulation of Nox4. Furthermore, it increases the release of intracellular reactive oxygen species (ROS), the production of intracellular Ca2+, and the activation of exosomal GRP78 and cell lysate GRP78. Combination treatment using the sarco/endoplasmic reticulum Ca2+-ATPase inhibitor thapsigargin (TG) and JI017 reportedly induces increased ER stress and cell death in comparison to the control; however, knockdown experiments of PERK and CHOP indicated suppressed apoptosis and ER stress in JI017-treated ovarian cancer cells. Furthermore, targeting Nox4 using specific siRNA and pharmacological ROS inhibitors, including N-acetylcystein and diphenylene iodonium, blocked apoptosis and ER stress in JI017-treated ovarian cancer cells. In the radioresistant ovarian cancer model, when compared to JI017 alone, JI017 co-treatment with radiation induced greater cell death and resulted in overcoming radioresistance by inhibiting epithelial–mesenchymal-transition-related phenomena such as the reduction of E-cadherin and the increase of N-cadherin, vimentin, Slug, and Snail. These findings suggest that JI017 is a powerful anti-cancer drug for ovarian cancer treatment and that its combination treatment with radiation may be a novel therapeutic strategy for radioresistant ovarian cancer.

Highlights

  • Ovarian cancer is the fifth most common cancer occurring in woman globally [1]

  • We identified that JI017 causes apoptosis via the PERK–ATF4–CHOP axis and Ca2+ release and induces endoplasmic reticulum (ER) stress and apoptosis by releasing Nox4 and reactive oxygen species (ROS) in ovarian cancer cells

  • Our finding suggested that JI017 treatment induces apoptosis in ovarian cancer cell lines

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Summary

Introduction

Ovarian tumors can derive from three cell types: epithelial cells, germ cells, and stromal cells [2]. 90% of ovarian tumors originate from epithelial cells, 2–3% from germ cells and 5–6% from stromal cells [3]. Chemotherapy is a very strong therapeutic strategy for patients with ovarian cancer [4]. The molecular mechanisms leading to therapy resistance by the EMT process are still not clear and require deeper insight. To overcome this chemoresistance, we need to suggest a new treatment strategy for recurrent ovarian cancer so that patients receive the most effective therapy. Herbal medicines extracted from plants may be potential anti-cancer therapeutics to overcome chemoresistance [8]

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