Lobaplatin suppresses proliferation and induces apoptosis in the human colorectal carcinoma cell Line LOVO in vitro

Abstract Lobaplatin, as the third-generation platinum antineoplastic agent, showed promising antineoplastic effects in variety of preclinical test tumor models. We investigated the inhibition effect of lobaplatin on the colorectal carcinoma cell line LOVO in vitro, and explored its mechanism of acti...

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Veröffentlicht in:Biomedicine & pharmacotherapy 2011-06, Vol.65 (3), p.137-141
Hauptverfasser: Dai, Hong-yu, Liu, Lin, Qin, Shu-kui, He, Xiang-ming, Li, Su-yi
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Sprache:eng
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Zusammenfassung:Abstract Lobaplatin, as the third-generation platinum antineoplastic agent, showed promising antineoplastic effects in variety of preclinical test tumor models. We investigated the inhibition effect of lobaplatin on the colorectal carcinoma cell line LOVO in vitro, and explored its mechanism of action. The MTT assay was used to determine the inhibitory effect and inhibition ratio of lobaplatin on LOVO at various lobaplatin concentrations (500 μM, 1000 μM, 2000 μM). Apoptosis was detected by terminal deoxynucleotide transferase-mediated dUTP nickend labelling (TUNEL). The cell cycle and apoptotic rate were analyzed by flow cytometry (FCM) and the expression of caspase-3,8,9 in cells was detected by chromometry. The results of MTT assay showed that proliferation of LOVO cells was inhibited by lobaplatin in a concentration-dependent manner. Apoptosis was detected in LOVO cells by TUNEL. The FCM assay indicated that lobaplatin altered the cell cycle and induced apoptosis of the LOVO cells when treated for 24 h, the percentages of cells in the S phase transition were increased, whereas the percentages of cells in the G2 transition were decreased. The expressions of caspase-3 8 9 is higher than the control group after LOVO cells were treated by lobaplatin. Lobaplatin can inhibit the proliferation of colorectal carcinoma cell line LOVO by inducing apoptosis in vitro. The mechanism may be related to the “S” cycle arrest in cell cycle distribution and the up-regulated expression of caspase-8 and caspase-9 which up-regulated the expression of caspase-3.
ISSN:0753-3322
1950-6007
DOI:10.1016/j.biopha.2010.12.001