Valentini Alessandra, Conforti Franco, Crispini Alessandra, De Martino Angelo, Condello Rossella, Stellitano Chiara, Rotilio Giuseppe, Ghedini Mauro, Federici Giorgio, Bernardini Sergio, Pucci Daniela
Department of Laboratory Medicine, UOC Clinical Molecular Biology, PTV-Hospital University Tor Vergata, Via Oxford 81, 00133 Rome, Italy.
J Med Chem. 2009 Jan 22;52(2):484-91. doi: 10.1021/jm801276a.
A new ionic Pd(II) complex, [(bipy)Pd(Pcurc)][CF(3)SO(3)], 1, with the metal center coordinated to two different chelating ligands, the pure curcumin (Pcurc) and the 4,4'-dinonyl-2,2'-bipyridine (bipy), has been synthesized, fully characterized, and its antitumoral mechanism and oxidant property have been investigated. The Pd(II) complex induces both cell growth inhibition and apoptosis of human prostate cancer cells, (LnCaP, PC3, and DU145) through the production of ROS and JNK phosphorylation associated with GSTp1 down-regulation. ROS production induced by complex 1 treatment activated apoptosis through mitochondrial membrane depolarization in all prostate cancer cells, with up-regulation of Bax and down-regulation of Bcl-2 proteins. In addition, while curcumin determines DNA damage and PARP cleavage, complex 1 does not elicit any activation of PARP enzyme. Taken together, these data validate the significance of curcumin complexation to a metal center and its conjugation to another functionalized bioactive ligand in the apoptosis signal transduction and enhancement of cell death in prostate cancer cell lines and suggest the potential of this design strategy in the improvement of the metal-based drugs cytotoxicity.
一种新的离子型钯(II)配合物[(bipy)Pd(Pcurc)][CF(3)SO(3)],即化合物1,已被合成并全面表征,其金属中心与两种不同的螯合配体——纯姜黄素(Pcurc)和4,4'-二壬基-2,2'-联吡啶(bipy)配位,同时对其抗肿瘤机制和氧化性能进行了研究。钯(II)配合物通过产生活性氧(ROS)和与谷胱甘肽S-转移酶p1(GSTp1)下调相关的c-Jun氨基末端激酶(JNK)磷酸化,诱导人前列腺癌细胞(LnCaP、PC3和DU145)的细胞生长抑制和凋亡。化合物1处理诱导产生的ROS通过所有前列腺癌细胞中的线粒体膜去极化激活凋亡,同时上调Bax蛋白并下调Bcl-2蛋白。此外,虽然姜黄素会导致DNA损伤和聚(ADP-核糖)聚合酶(PARP)裂解,但化合物1不会引发PARP酶的任何激活。综上所述,这些数据证实了姜黄素与金属中心络合及其与另一种功能化生物活性配体结合在前列腺癌细胞系凋亡信号转导和增强细胞死亡中的重要性,并表明这种设计策略在提高金属基药物细胞毒性方面的潜力。