Literature DB >> 32057718

Osthole inhibits ovarian carcinoma cells through LC3-mediated autophagy and GSDME-dependent pyroptosis except for apoptosis.

Jing Liang1, Jianlong Zhou2, Youqin Xu3, Xiaofei Huang4, Xuefei Wang5, Wenhua Huang6, Hui Li7.   

Abstract

Ovarian carcinoma (OC) begins in the ovaries and remains a highly lethal malignancy. Despite great efforts have been made to fight against OC, there still remain limited therapeutic options owing to chemotherapy drug resistance and serious side effects. Osthole is a derivative of coumarin and extracted from Cnidium monnieri (L.) Cusson, which has been drawn more attention due to its high biological activity in various disease. However, the underlying mechanism of osthole in OC is still unclear. In this study, we aim to evaluate the mechanism of osthole against OC cells. Methodologically, Cell Counting Kit-8 (CCK-8) and LIVE/DEAD™ Cell Imaging experiments were employed to assess cell viability. 2',7'-Dichlorofluorescin diacetate (DCFH-DA) staining, flow cytometry, Hoechst staining, JC-1 staining assay and western blotting were performed to study apoptosis. Transmission electron microscopy, western blotting and monodansyl cadaverine (MDC) staining assay were used to study autophagy. Western blotting and microscopy image were employed to determine pyroptosis. Our results demonstrated that osthole could significantly suppress OC cells growth in a dose-dependent manner. We further proved that osthole could inhibit OC cells growth by mitochondria-mediated apoptosis. Meanwhile, we also discovered that osthole could trigger cell autophagy and lead to cell death. Furthermore, our study revealed that osthole could lead to pyroptosis through inducing the cleavage of gasdermin E (c-GSDME) level. Taken together, Osthole could significantly suppress the growth of OC cells and induce OC cells death via apoptosis, pyroptosis and autophagy, which is a promising new drug for the treatment of OC.
Copyright © 2020 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Apoptosis; Autophagy; Osthole; Ovarian carcinoma; Pyroptosis

Mesh:

Substances:

Year:  2020        PMID: 32057718     DOI: 10.1016/j.ejphar.2020.172990

Source DB:  PubMed          Journal:  Eur J Pharmacol        ISSN: 0014-2999            Impact factor:   4.432


  14 in total

1.  Osthole inhibits the migration and invasion of highly metastatic breast cancer cells by suppressing ITGα3/ITGβ5 signaling.

Authors:  Yue-Qiang Chen; Hai-Yan Song; Zhong-Yan Zhou; Jiao Ma; Zhan-Yang Luo; Ying Zhou; Jian-Yi Wang; Sheng Liu; Xiang-Hui Han
Journal:  Acta Pharmacol Sin       Date:  2021-08-23       Impact factor: 7.169

2.  Osthole Induces Apoptosis and Caspase-3/GSDME-Dependent Pyroptosis via NQO1-Mediated ROS Generation in HeLa Cells.

Authors:  Juan Wang; Mengjie Huangfu; Xiaojuan Li; Mengjie Han; Guoxiang Liu; Dan Yu; Luwei Zhou; Tong Dou; Yisa Liu; Xiao Guan; Riming Wei; Xu Chen
Journal:  Oxid Med Cell Longev       Date:  2022-06-08       Impact factor: 7.310

3.  Gasdermin E permits interleukin-1 beta release in distinct sublytic and pyroptotic phases.

Authors:  Bowen Zhou; Derek W Abbott
Journal:  Cell Rep       Date:  2021-04-13       Impact factor: 9.423

Review 4.  The caspase-3/GSDME signal pathway as a switch between apoptosis and pyroptosis in cancer.

Authors:  Mingxia Jiang; Ling Qi; Lisha Li; Yanjing Li
Journal:  Cell Death Discov       Date:  2020-10-28

Review 5.  Natural Products as Inducers of Non-Canonical Cell Death: A Weapon against Cancer.

Authors:  Giulia Greco; Elena Catanzaro; Carmela Fimognari
Journal:  Cancers (Basel)       Date:  2021-01-15       Impact factor: 6.639

6.  Cordyceps militaris extract induces apoptosis and pyroptosis via caspase-3/PARP/GSDME pathways in A549 cell line.

Authors:  Zixuan Hu; Yijing Lai; Chaoya Ma; Lina Zuo; Guanlin Xiao; Haili Gao; Biyuan Xie; Xuejun Huang; Haining Gan; Dane Huang; Nan Yao; Baoguo Feng; JieXia Ru; Yuxing Chen; Dake Cai
Journal:  Food Sci Nutr       Date:  2021-10-30       Impact factor: 2.863

Review 7.  Pyroptosis: A Developing Foreland of Ovarian Cancer Treatment.

Authors:  Tianyi Liu; Min Hou; Manyu Li; Cheng Qiu; Lin Cheng; Tianyu Zhu; Jinfeng Qu; Lanyu Li
Journal:  Front Oncol       Date:  2022-02-07       Impact factor: 6.244

Review 8.  Ferroptosis, necroptosis, and pyroptosis in the occurrence and development of ovarian cancer.

Authors:  Chunmei Zhang; Ning Liu
Journal:  Front Immunol       Date:  2022-07-25       Impact factor: 8.786

9.  Osthole induces necroptosis via ROS overproduction in glioma cells.

Authors:  Mengjie Huangfu; Riming Wei; Juan Wang; Jianli Qin; Dan Yu; Xiao Guan; Xumei Li; Minglei Fu; Haiping Liu; Xu Chen
Journal:  FEBS Open Bio       Date:  2021-01-19       Impact factor: 2.792

Review 10.  Gasdermin E-mediated programmed cell death: An unpaved path to tumor suppression.

Authors:  Yueyuan Wang; Jingyu Peng; Xiao Xie; Zhihao Zhang; Mingxi Li; Ming Yang
Journal:  J Cancer       Date:  2021-06-26       Impact factor: 4.207

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