Oncotarget

Research Papers:

Antitumor activity of a Trans-thiosemicarbazone schiff base palladium (II) complex on human gastric adenocarcinoma cells

Bingchang Zhang, Haiqing Luo, Qinjuan Xu, Lirong Lin _ and Bing Zhang

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Oncotarget. 2017; 8:13620-13631. https://doi.org/10.18632/oncotarget.14620

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Abstract

Bingchang Zhang2,*, Haiqing Luo2,*, Qinjuan Xu1, Lirong Lin1, Bing Zhang2

1College of Chemistry and Chemical Engineering, University of Xiamen, Xiamen, 361005, P. R. China

2School of Medicine, University of Xiamen, Xiamen, 361102, P. R. China

*These authors contributed equally to this work

Correspondence to:

Lirong Lin, email: [email protected]

Bing Zhang, email: [email protected]

Keywords: trans-thiosemicarbazone Schiff base palladium (II) complex, human gastric adenocarcinoma cells, a nude mouse tumor xenograft model, antitumor activity

Received: April 18, 2016     Accepted: January 03, 2017     Published: January 13, 2017

ABSTRACT

The development of transition-metal-based antitumor drug candidates increases the metallopharmaceuticals study dramatically. Two trans-thiosemicarbazone-based, Schiff base palladium (Pd) (II) complexes, DMABTSPd (TSPd) and DMABPTSPd (PTSPd), were prepared and characterized as described in our previous study. Here, we investigated whether the two complexes have antitumor effect on human gastric adenocarcinoma cell lines, BGC-823 and SGC-7901, compared with normal human gastric mucosal epithelial cell line, Ges-1. The results show that the Pd complex with the bare amino group (DMABTSPd(TSPd)) can inhibit cell viabilities and induce apoptosis in human gastric carcinoma cells, rather than the Pd complex without the bare amino group (DMABPTSPd (PTSPd)). This occurs via a mitochondrial-related pathway by down-regulating the level of Bcl-2 expression and up-regulating the level of Bid expression. Meanwhile, DMABTSPd (TSPd) suppressed tumor growth via a mitochondrial-related pathway in a nude mouse tumor xenograft model derived from BGC-823 cells. These findings demonstrate that DMABTSPd (TSPd) is worthy of further structural optimization and representing a promising Pd complex for the development of a new antitumor therapeutic agent.


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