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alpha-Mangostin and Apigenin Induced Cell Cycle Arrest and Programmed Cell Death in SKOV-3 Ovarian Cancer Cells
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Metadata
Document Title
alpha-Mangostin and Apigenin Induced Cell Cycle Arrest and Programmed Cell Death in SKOV-3 Ovarian Cancer Cells
Author
Ittiudomrak T, Puthong S, Roytrakul S, Chanchao C
Name from Authors Collection
Affiliations
Chulalongkorn University; Chulalongkorn University; National Science & Technology Development Agency - Thailand; National Center Genetic Engineering & Biotechnology (BIOTEC); Chulalongkorn University
Type
Article
Source Title
TOXICOLOGICAL RESEARCH
ISSN
1976-8257
Year
2019
Volume
35
Open Access
Green Published, hybrid, Green Submitted
Publisher
KOREAN SOC TOXICOLOGY
DOI
10.5487/TR.2019.35.2.167
Format
Abstract
Ovarian cancer is the fifth main cause of pre-senescent death in women. Although chemotherapy is generally an efficient treatment, its side effects and the occurrence of chemotherapeutic resistance have prompted the need for alternative treatments. In this study, alpha-mangostin and apigenin were evaluated as possible anticancer alternatives to the chemotherapeutic drug doxorubicin, used herein as a positive control. The ovarian adenocarcinoma cell line SKOV-3 (ATCC No. HTB77) was used as model ovarian cancer cells, whereas the skin fibroblast line CCD-986Sk (ATCC No. CRL-1947) and lung fibroblast line WI-38 (ATCC No. CCL-75) were used as model untransformed cells. Apigenin and doxorubicin inhibited the growth of SKOV-3 cells in a dose- and time-dependent manner. After 72 hr exposure, doxorubicin was mostly toxic to SKOV-3 cells, whereas apigenin was toxic to SKOV-3 cells but not CCD-986Sk and WI-38 cells. alpha-Mangostin was more toxic to SKOV-3 cells than to CCD-986Sk cells. A lower cell density, cell shrinkage, and more unattached (floating round) cells were observed in all treated SKOV-3 cells, but the greatest effects were observed with alpha-mangostin. With regard to programmed cell death, apigenin caused early apoptosis within 24 hr, whereas alpha-mangostin and doxorubicin caused late apoptosis and necrosis after 72 hr of exposure. Caspase-3 activity was significantly increased in alpha-mangostin-treated SKOV-3 cells after 12 hr of exposure, whereas only caspase-9 activity was significantly increased in apigenin-treated SKOV-3 cells at 24 hr. Both alpha-mangostin and apigenin arrested the cell cycle at the G(2)/M phase, but after 24 and 48 hr, respectively. Significant upregulation of BCL2 (apoptosis-associated gene) and COX2 (inflammation-associated gene) transcripts was observed in apigenin- and alpha-mangostin-treated SKOV-3 cells, respectively. alpha-Mangostin and apigenin are therefore alternative options for SKOV-3 cell inhibition, with apigenin causing rapid early apoptosis related to the intrinsic apoptotic pathway, and alpha-mangostin likely being involved with inflammation.
Keyword
alpha-mangostin | Apigenin | Apoptosis | Caspase activity | Cell cycle arrest | Ovarian cancer
Funding Sponsor
Chulalongkorn University; 90th Anniversary of Chulalongkorn University Fund (Ratchadaphiseksomphot Endowment Fund) [IV_61_003]; Overseas Research Experience Scholarship for Graduate Student; Doctoral Degree Chulalongkorn University 100th Year Birthday Anniversary
License
CC-BY
Rights
Korean Society of Toxicology
Publication Source
WOS