Literature DB >> 23812885

Viability inhibition effect of gambogic acid combined with cisplatin on osteosarcoma cells via mitochondria-independent apoptotic pathway.

Wei Zhao1, Chang-Cheng You, Jin-Peng Zhuang, Jia-Ning Zu, Zhi-Yong Chi, Gong-Ping Xu, Jing-Long Yan.   

Abstract

We previously demonstrated that gambogic acid (GA) is a promising chemotherapeutic compound for human osteosarcoma treatment. The aim of this study was to detect whether the combination of lower-dose GA (0.3 mg/L) and cisplatin (CDDP) (1 mg/L) could perform a synergistic effect on inhibiting tumor in four osteosarcoma cell lines. Our results showed that the combination between GA at lower dose and CDDP significantly exerts a synergistic effect on inhibiting the cellular viability in MG63, HOS, and U2OS cells. In contrast, an antagonistic character was detected in SAOS2 cells exposed to the combined use of lower-dose GA (0.3 mg/L) and CDDP (1 mg/L). Then, analysis of cell cycle showed the combination of both drugs significantly induced the G2/M phase arrest, without any difference relative to GA treatment alone, in MG63 cells. Flow-cytometric analysis of cell apoptosis displayed that the apoptotic rate in the combination group is higher than that in GA treatment alone in MG63, HOS, and U2OS cells. The combined use of both drugs had no effect on mitochondrial membrane potential, but promoted the apoptosis-inducing function through triggering of CDDP in the three cell lines. By measurement of mitochondrial membrane potential, the activity of caspase-3 and the expressions of caspase-8 and caspase-9, it was showed that the apoptosis-promoting effect of the combined use of both drugs could be dependent on the death receptor apoptosis pathway, not dependent on the mitochondria apoptosis mechanism. This research, for the first time, demonstrates that GA could increase the chemotherapeutic effect of CDDP in human osteosarcoma treatment through inducing the cell cycle arrest and promoting cell apoptosis.

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Year:  2013        PMID: 23812885     DOI: 10.1007/s11010-013-1740-5

Source DB:  PubMed          Journal:  Mol Cell Biochem        ISSN: 0300-8177            Impact factor:   3.396


  31 in total

1.  Anticancer effect and apoptosis induction of gambogic acid in human gastric cancer line BGC-823.

Authors:  Wei Liu; Qing-Long Guo; Qi-Dong You; Li Zhao; Hong-Yan Gu; Sheng-Tao Yuan
Journal:  World J Gastroenterol       Date:  2005-06-28       Impact factor: 5.742

2.  Prognostic factors in high-grade osteosarcoma of the extremities or trunk: an analysis of 1,702 patients treated on neoadjuvant cooperative osteosarcoma study group protocols.

Authors:  Stefan S Bielack; Beate Kempf-Bielack; Günter Delling; G Ulrich Exner; Silke Flege; Knut Helmke; Rainer Kotz; Mechthild Salzer-Kuntschik; Matthias Werner; Winfried Winkelmann; Andreas Zoubek; Heribert Jürgens; Kurt Winkler
Journal:  J Clin Oncol       Date:  2002-02-01       Impact factor: 44.544

3.  Cisplatin (CDDP) specifically induces apoptosis via sequential activation of caspase-8, -3 and -6 in osteosarcoma.

Authors:  K Seki; H Yoshikawa; K Shiiki; Y Hamada; N Akamatsu; K Tasaka
Journal:  Cancer Chemother Pharmacol       Date:  2000       Impact factor: 3.333

Review 4.  Targeting apoptosis pathways in cancer therapy.

Authors:  Irene M Ghobrial; Thomas E Witzig; Alex A Adjei
Journal:  CA Cancer J Clin       Date:  2005 May-Jun       Impact factor: 508.702

5.  Gambogic acid induces apoptosis and regulates expressions of Bax and Bcl-2 protein in human gastric carcinoma MGC-803 cells.

Authors:  Li Zhao; Qing-Long Guo; Qi-Dong You; Zhao-Qiu Wu; Hong-Yan Gu
Journal:  Biol Pharm Bull       Date:  2004-07       Impact factor: 2.233

6.  Microtubule depolymerization and phosphorylation of c-Jun N-terminal kinase-1 and p38 were involved in gambogic acid induced cell cycle arrest and apoptosis in human breast carcinoma MCF-7 cells.

Authors:  Jing Chen; Hong-Yan Gu; Na Lu; Yong Yang; Wei Liu; Qi Qi; Jing-Jing Rong; Xiao-Tang Wang; Qi-Dong You; Qing-Long Guo
Journal:  Life Sci       Date:  2008-05-16       Impact factor: 5.037

7.  Gambogic acid inhibits angiogenesis through suppressing vascular endothelial growth factor-induced tyrosine phosphorylation of KDR/Flk-1.

Authors:  Na Lu; Yong Yang; Qi-Dong You; Yun Ling; Ying Gao; Hong-Yan Gu; Li Zhao; Xiao-Tang Wang; Qing-Long Guo
Journal:  Cancer Lett       Date:  2007-12-08       Impact factor: 8.679

8.  CPP32/apopain is a key interleukin 1 beta converting enzyme-like protease involved in Fas-mediated apoptosis.

Authors:  J Schlegel; I Peters; S Orrenius; D K Miller; N A Thornberry; T T Yamin; D W Nicholson
Journal:  J Biol Chem       Date:  1996-01-26       Impact factor: 5.157

9.  Overcoming chemotherapy resistance of ovarian cancer cells by liposomal cisplatin: molecular mechanisms unveiled by gene expression profiling.

Authors:  Martin Koch; Michaela L Krieger; Daniel Stölting; Norbert Brenner; Manfred Beier; Ulrich Jaehde; Michael Wiese; Hans-Dieter Royer; Gerd Bendas
Journal:  Biochem Pharmacol       Date:  2013-02-08       Impact factor: 5.858

10.  Osteosarcoma incidence and survival rates from 1973 to 2004: data from the Surveillance, Epidemiology, and End Results Program.

Authors:  Lisa Mirabello; Rebecca J Troisi; Sharon A Savage
Journal:  Cancer       Date:  2009-04-01       Impact factor: 6.860

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  20 in total

1.  Gambogic acid induces apoptosis and inhibits colorectal tumor growth via mitochondrial pathways.

Authors:  Guang-Ming Huang; Yu Sun; Xin Ge; Xin Wan; Chun-Bo Li
Journal:  World J Gastroenterol       Date:  2015-05-28       Impact factor: 5.742

2.  Hypoxia-induced resistance to cisplatin-mediated apoptosis in osteosarcoma cells is reversed by gambogic acid independently of HIF-1α.

Authors:  Wei Zhao; Shi-Qi Xia; Jin-Peng Zhuang; Zhi-Peng Zhang; Chang-Cheng You; Jing-Long Yan; Gong-Ping Xu
Journal:  Mol Cell Biochem       Date:  2016-07-29       Impact factor: 3.396

3.  Single nucleotide polymorphisms of HER2 related to osteosarcoma susceptibility.

Authors:  Da-Jiang Xin; Guo-Dong Shen; Jian Song
Journal:  Int J Clin Exp Pathol       Date:  2015-08-01

4.  Inhibition of inwardly rectifying Kir2.x channels by the novel anti-cancer agent gambogic acid depends on both pore block and PIP2 interference.

Authors:  Daniel Scherer; Benedikt Schworm; Claudia Seyler; Panagiotis Xynogalos; Eberhard P Scholz; Dierk Thomas; Hugo A Katus; Edgar Zitron
Journal:  Naunyn Schmiedebergs Arch Pharmacol       Date:  2017-04-02       Impact factor: 3.000

5.  Gambogic acid inhibits the growth of ovarian cancer tumors by regulating p65 activity.

Authors:  Qiusha Tang; Mudan Lu; Huan Zhou; Daozhen Chen; Lu Liu
Journal:  Oncol Lett       Date:  2016-11-24       Impact factor: 2.967

6.  Gambogic acid inhibits growth, induces apoptosis, and overcomes drug resistance in human colorectal cancer cells.

Authors:  Chuangyu Wen; Lanlan Huang; Junxiong Chen; Mengmeng Lin; Wen Li; Biyan Lu; Zina Jeyapalan Rutnam; Aikichi Iwamoto; Zhongyang Wang; Xiangling Yang; Huanliang Liu
Journal:  Int J Oncol       Date:  2015-09-15       Impact factor: 5.650

7.  Cell-penetrating peptide conjugates of gambogic acid enhance the antitumor effect on human bladder cancer EJ cells through ROS-mediated apoptosis.

Authors:  Lei Lyu; Lu-Qi Huang; Tao Huang; Wei Xiang; Jing-Dong Yuan; Chuan-Hua Zhang
Journal:  Drug Des Devel Ther       Date:  2018-04-05       Impact factor: 4.162

8.  Gambogic acid synergistically potentiates cisplatin-induced apoptosis in non-small-cell lung cancer through suppressing NF-κB and MAPK/HO-1 signalling.

Authors:  L-H Wang; Y Li; S-N Yang; F-Y Wang; Y Hou; W Cui; K Chen; Q Cao; S Wang; T-Y Zhang; Z-Z Wang; W Xiao; J-Y Yang; C-F Wu
Journal:  Br J Cancer       Date:  2013-12-03       Impact factor: 7.640

9.  Combination of gambogic acid with cisplatin enhances the antitumor effects on cisplatin-resistant lung cancer cells by downregulating MRP2 and LRP expression.

Authors:  Wendian Zhang; Hechao Zhou; Ying Yu; Jingjing Li; Haiwen Li; Danxian Jiang; Zihong Chen; Donghong Yang; Zumin Xu; Zhonghua Yu
Journal:  Onco Targets Ther       Date:  2016-06-02       Impact factor: 4.147

10.  Telomerase reverse transcriptase promotes chemoresistance by suppressing cisplatin-dependent apoptosis in osteosarcoma cells.

Authors:  Zhengpei Zhang; Ling Yu; Guo Dai; Kezhou Xia; Gaiwei Liu; Qi Song; Chunjie Tao; Tian Gao; Weichun Guo
Journal:  Sci Rep       Date:  2017-08-01       Impact factor: 4.379

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