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双核聚胺连接的铂类抗肿瘤配合物的溶液研究。

Solution studies of dinuclear polyamine-linked platinum-based antitumour complexes.

机构信息

School of Biomedical, Biomolecular & Chemical Sciences, The University of Western Australia, 35 Stirling Highway, Crawley, WA 6009, Australia.

出版信息

Dalton Trans. 2011 Apr 28;40(16):4147-54. doi: 10.1039/c1dt00001b. Epub 2011 Mar 8.

Abstract

The aquation profiles of two novel dinuclear polyamine-linked, platinum-based antitumour complexes {trans-PtCl((15)NH(3))(2)}(2){μ-((15)NH(2)(CH(2))(6)(15)NH(2)(CH(2))(6)(15)NH(2))} (BBR3007, 1,1/t,t-6,6, 1) and {trans-PtCl((15)NH(3))(2)}(2){μ-((15)NH(2)(CH(2))(6)(15)NH(2)(CH(2))(2)(15)NH(2)(CH(2))(6)(15)NH(2))} (BBR3610, 1,1/t,t-6,2,6, 1') have been probed using 2D [(1)H, (15)N] HSQC NMR spectroscopy. Reported herein are the rate constants for the hydrolysis of 1 and 1', as well as the acid dissociation constants of the coordinated aqua ligands in their aquated derivatives. The aquation and anation rate constants for the single step aquation model in 15 mM NaClO(4) (pH 5.4) at 298 K are, for 1, k(1) = 7.2 ± 0.1 ×10(-5) s(-1), k(-1) = 0.096 ± 0.002 M(-1) s(-1) and, for 1', k(1) = 4.0 ± 0.2 × 10(-5) s(-1), k(-1) = 1.4 ± 0.1 M(-1) s(-1). The effect of the linker backbone (Pt(tetra(m)mine vs. polyamine) was evaluated by comparison with previous data for the trinuclear complex {trans-PtCl(NH(3))(2)}(2)(μ-trans-Pt(NH(3))(2){NH(2)(CH(2))(6)NH(2)}(2)) (1,0,1/t,t,t or BBR3464). The pK(1) for 1,0,1/t,t,t (3.44) is closest to that of 1 (3.12), while the pronounced difference for 1' (4.54), means that 1' is the least aquated of the three complexes at equilibrium. pK(a) values of 5.92 were calculated for the aquated forms of both 1 and 1', which are 0.3 pK units higher than for either 1,0,1/t,t,t, or the dinuclear 1,1/t,t. The higher pK(a) values for both polyamine-linked compounds may be attributed to the formation of macrochelates between the central NH(2) groups and the {PtN(3)O} coordination sphere of the aquated species.

摘要

两种新型双核聚胺连接的铂类抗肿瘤配合物{trans-PtCl((15)NH(3))(2)}(2){μ-((15)NH(2)(CH(2))(6)(15)NH(2)(CH(2))(6)(15)NH(2))}(BBR3007,1,1/t,t-6,6,1)和{trans-PtCl((15)NH(3))(2)}(2){μ-((15)NH(2)(CH(2))(6)(15)NH(2)(CH(2))(2)(15)NH(2)(CH(2))(6)(15)NH(2))}(BBR3610,1,1/t,t-6,2,6,1')的水合作用谱已通过 2D[(1)H,(15)N]HSQC NMR 光谱进行了探测。本文报道了 1 和 1'水解的速率常数,以及它们水合衍生物中配位水合配体的酸离解常数。在 298 K 时,在 15 mM NaClO(4)(pH 5.4)中,对于单步水合模型,1 的水合和氨化速率常数为 k(1)=7.2±0.1×10(-5)s(-1),k(-1)=0.096±0.002 M(-1)s(-1),而 1'的 k(1)=4.0±0.2×10(-5)s(-1),k(-1)=1.4±0.1 M(-1)s(-1)。通过与先前三核配合物{trans-PtCl(NH(3))(2)}(2)(μ-trans-Pt(NH(3))(2){NH(2)(CH(2))(6)NH(2)}(2))(1,0,1/t,t,t 或 BBR3464)的数据进行比较,评估了连接体主链(Pt(tetra(m)mine 与聚胺)的影响。1,0,1/t,t,t(3.44)的 pK(1)最接近 1(3.12),而 1'(4.54)的明显差异意味着在平衡时,1'是三个配合物中最不易水合的。计算出 1 和 1'的水合形式的 pK(a)值分别为 5.92,比 1,0,1/t,t,t 或双核 1,1/t,t 高 0.3 pK 单位。对于两种聚胺连接的化合物,较高的 pK(a)值可能归因于中心 NH(2)基团与水合物种的{PtN(3)O}配位球之间形成大环螯合物。

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