Cubo Leticia, Quiroga Adoración G, Zhang Junyong, Thomas Donald S, Carnero Amancio, Navarro-Ranninger Carmen, Berners-Price Susan J
Departamento de Química Inorgánica, Universidad Autónoma de Madrid, Madrid, Spain.
Dalton Trans. 2009 May 14(18):3457-66. doi: 10.1039/b819301k. Epub 2009 Jan 29.
Three (15)N-labelled trans-Pt(ii) amine complexes with isopropylamine ((15)N-ipa), methylamine ((15)N-ma) and dimethylamine ((15)N-dma) have been prepared and characterized. 2D [(1)H,(15)N] HSQC NMR spectroscopy was used to obtain the rate and equilibrium constants for the aquation of trans-[PtCl(2)((15)N-ipa)((15)N-ma)] ((15)N-1), trans-[PtCl(2)((15)N-dma)((15)N-ma)] ((15)N-2) and trans-[PtCl(2)((15)N-dma)((15)N-ipa)] ((15)N-) in 100 mM NaClO(4) solutions at 298 K. New (15)N shift ranges for H(2)N-Pt(II)-N and HN-Pt(II)-N groups are reported. Formation of the diaqua complex was not observed for and accounted for <2% of the species at equilibrium for 1 and 2 . The first aquation step is significantly faster for 2 (k(1) = 14 x 10(-5) s(-1)) than for the two complexes with the bulkier ipa ligand (k(1) = 5.5 x 10(-5) s(-1) (), 6.1 x 10(-5) s(-1) (3)), but 2 is the least aquated of the three complexes at equilibrium. The pK(a) values for the monoaqua adducts of 1-3 are similar (5.98, 5.85 and 5.91, respectively) and 0.4 pH units lower than the related cis complex cis-[PtCl(2)(dma)(2)], indicating a smaller proportion of more reactive aqua species will exist at physiological pH. The pK(a) values for the diaqua adduct of 2 (4.59 and 7.98) are 0.3-0.6 pH units higher than those of 1(4.31 and 7.30) and 3 (4.28 and 7.29), which have very similar values. The speciation profiles of 1-3 , calculated on the basis of the calculated equilibrium and dissociation constants, indicate that <1% hydrolyzed species will exist under physiological conditions in cancer cells. The cytotoxicity of 1-3 (non-(15)N-labelled) was assessed in three cancer lines (SF268, MCF-7 and NCI-H460). The new trans-Pt(ii) diamine complex 2 is more active than 1 and 3 in all cases and is more potent than cisplatin in the MCF-7 adenocarcinoma cell line.
已制备并表征了三种含异丙胺(((^{15}N)-ipa)、甲胺(((^{15}N)-ma)和二甲胺(((^{15}N)-dma)的((^{15}N)标记的反式(Pt(II))胺配合物。使用二维([^{1}H,^{15}N]\ HSQC)核磁共振光谱法获得了反式([PtCl_2((^{15}N)-ipa)((^{15}N)-ma)])(((^{15}N)-1)、反式([PtCl_2((^{15}N)-dma)((^{15}N)-ma)])(((^{15}N)-2)和反式([PtCl_2((^{15}N)-dma)((^{15}N)-ipa)])(((^{15}N)-3)在(298K)的(100mM\ NaClO_4)溶液中水解的速率常数和平衡常数。报道了(H_2N - Pt(II) - N)和(HN - Pt(II) - N)基团新的(^{15}N)位移范围。未观察到二水合配合物的形成,且在平衡时其占物种的比例小于(2%),对于(1)和(2)均如此。对于(2)((k_1 = 14×10^{-5}\ s^{-1})),第一步水解明显快于另外两种含有体积较大的ipa配体的配合物((k_1 = 5.5×10^{-5}\ s^{-1})((1)),(6.1×10^{-5}\ s^{-1})((3))),但在平衡时(2)是三种配合物中水解程度最小的。(1 - 3)的一水合加合物的(pK_a)值相似(分别为(5.98)、(5.85)和(5.91)),比相关的顺式配合物顺式([PtCl_2(dma)_2])低(0.4)个(pH)单位,表明在生理(pH)下,反应性更强的水合物种所占比例较小。(2)的二水合加合物的(pK_a)值((4.59)和(7.98))比(1)((4.31)和(7.30))和(3)((4.28)和(7.29))高(0.3 - 0.6)个(pH)单位,(1)和(3)的值非常相似。根据计算的平衡常数和解离常数计算得到的(1 - 3)的物种分布曲线表明,在癌细胞的生理条件下,水解物种的比例小于(1%)。评估了(1 - 3)(未标记(^{15}N))在三种癌细胞系((SF268)、(MCF - 7)和(NCI - H460))中的细胞毒性。新的反式(Pt(II))二胺配合物(2)在所有情况下都比(1)和(3)更具活性,并且在(MCF - 7)腺癌细胞系中比顺铂更有效。