Stearoyl-CoA desaturase 1 inhibition induces ER stress-mediated apoptosis in ovarian cancer cells

被引:0
作者
Juwon Lee
Suin Jang
Jihye Im
Youngjin Han
Soochi Kim
HyunA Jo
Wenyu Wang
Untack Cho
Se Ik Kim
Aeran Seol
Boyun Kim
Yong Sang Song
机构
[1] Seoul National University,WCU Biomodulation, Department of Agricultural Biotechnology
[2] Seoul National University,Cancer Research Institute, College of Medicine
[3] Stanford University School of Medicine,Department of Neurology and Neurological Sciences
[4] Stanford University School of Medicine,Paul F. Glenn Laboratories for the Biology of Aging
[5] Zhejiang University,Department of Medical Oncology, The First Affiliated Hospital, College of Medicine
[6] Seoul National University,Department of Obstetrics and Gynecology, College of Medicine
[7] Korea University College of Medicine,Department of Obstetrics and Gynecology
[8] Kyungsung University,Department of SmartBio, College of Life and Health Science
[9] Myongji Hospital,Department of Obstetrics and Gynecology
[10] Hanyang University College of Medicine,undefined
来源
Journal of Ovarian Research | / 17卷
关键词
Ovarian cancer; Lipid metabolism; SCD1; ER stress; Apoptosis;
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学科分类号
摘要
Ovarian cancer is a leading cause of death among gynecologic tumors, often detected at advanced stages. Metabolic reprogramming and increased lipid biosynthesis are key factors driving cancer cell growth. Stearoyl-CoA desaturase 1 (SCD1) is a crucial enzyme involved in de novo lipid synthesis, producing mono-unsaturated fatty acids (MUFAs). Here, we aimed to investigate the expression and significance of SCD1 in epithelial ovarian cancer (EOC). Comparative analysis of normal ovarian surface epithelial (NOSE) tissues and cell lines revealed elevated SCD1 expression in EOC tissues and cells. Inhibition of SCD1 significantly reduced the proliferation of EOC cells and patient-derived organoids and induced apoptotic cell death. Interestingly, SCD1 inhibition did not affect the viability of non-cancer cells, indicating selective cytotoxicity against EOC cells. SCD1 inhibition on EOC cells induced endoplasmic reticulum (ER) stress by activating the unfolded protein response (UPR) sensors and resulted in apoptosis. The addition of exogenous oleic acid, a product of SCD1, rescued EOC cells from ER stress-mediated apoptosis induced by SCD1 inhibition, underscoring the importance of lipid desaturation for cancer cell survival. Taken together, our findings suggest that the inhibition of SCD1 is a promising biomarker as well as a novel therapeutic target for ovarian cancer by regulating ER stress and inducing cancer cell apoptosis.
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