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配体交换诱导顺铂衍生物高效掺入尿烷-PPO 杂化体及其与多功能杂化网络的相互作用。

Ligand exchange inducing efficient incorporation of CisPt derivatives into Ureasil-PPO hybrid and their interactions with the multifunctional hybrid network.

机构信息

Instituto de Química, UNESP , Rua Professor Francisco Degni, 55, 14800-900 Araraquara, SP, Brazil.

出版信息

J Phys Chem B. 2012 Jul 12;116(27):7931-9. doi: 10.1021/jp302606b. Epub 2012 Jun 26.

Abstract

Efficient incorporation of (PtCl3EtOH)(-) anion derived from CisPt moiety into ureasil-PPO (poly(propylene oxide)) network was achieved from one-pot sol-gel synthesis carried out in the presence of water, HCl, and ethanol. Reactant proportion was adequately chosen to lead the sol-gel formation of siloxane nodes at the end of short PPO chains, to prevent the CisPt hydrolysis, and to induce platinum ligand exchange. The efficient dissolution of Pt species and the formation of a homogeneous liquid-like solution on the transparent and elastomeric ureasil-PPO hybrid were evidenced by differential scanning calorimetry and small-angle X-ray scattering. The CisPt ligand exchange and the formation of a Zeise-type salt Y(+)(PtCl3R)(-) were demonstrated by Raman spectroscopy and Pt L3-edge EXAFS analysis. In light of these results and in agreement with the proportion of reactants introduced in the media for synthesis and those self-produced by hydrolysis and condensation processes, we proposed for R the ethanol moiety and for Y the ammonium cation. The Raman spectroscopy studies indicated also that the ammonium cations are coordinated by the ether-type oxygen atoms of the PPO chains backbone, whereas the amine groups of the urea linkage participate in the (PtCl3EtOH)(-) anion coordination. In situ Raman monitoring of Pt species decomplexation induced by immersion of hybrid matrix in water highlighted the specific participation of Pt ligands in interaction with the urea group and of NH4(+) cations coordinated by ether-type oxygen atoms in the formation of supramolecular interactions between the PPO chains. The electrospray mass spectrometry analysis of the Pt species released in water from the ureasil-PPO hybrid evidenced that the structure of the complex, NH4 (PtCl3 EtOH), incorporated in the matrix is totally preserved after delivery. Due to both well-known antitumoral and catalytic activities of Pt species, the results reported herein are of prime importance for further applications as drug delivery systems with optimized release pattern or as potential materials for new conceptual development of in situ catalyst delivery in homogeneous catalysis.

摘要

通过在水、HCl 和乙醇存在下进行的一锅溶胶-凝胶合成,成功地将顺式铂部分衍生的(PtCl3EtOH)(-)阴离子有效地掺入到尿嘧啶-PPO(聚(氧化丙烯))网络中。反应物的比例经过适当选择,以导致短 PPO 链末端的硅氧烷节点的溶胶-凝胶形成,防止顺式 Pt 水解,并诱导铂配体交换。差示扫描量热法和小角 X 射线散射证明了 Pt 物种的有效溶解和均匀液态溶液在透明弹性尿嘧啶-PPO 杂化体上的形成。拉曼光谱和 Pt L3 边缘 EXAFS 分析表明,顺式 Pt 配体交换和 Zeise 型盐 Y(+)(PtCl3R)(-)的形成。根据这些结果,并与引入介质中的反应物比例以及水解和缩合过程中自产生的反应物比例一致,我们提出 R 为乙醇部分,Y 为铵阳离子。拉曼光谱研究还表明,铵阳离子由 PPO 链骨架的醚型氧原子配位,而脲键的胺基团参与(PtCl3EtOH)(-)阴离子配位。将杂化基质浸入水中诱导 Pt 物种解络合的原位拉曼监测突出表明,Pt 配体在与脲基团相互作用以及由醚型氧原子配位的 NH4(+)阳离子在 PPO 链之间形成超分子相互作用中具有特定的参与作用。从尿嘧啶-PPO 杂化体中释放到水中的 Pt 物种的电喷雾质谱分析表明,在输送后,完全保留了掺入基质中的配合物 NH4(PtCl3 EtOH)的结构。由于 Pt 物种具有众所周知的抗肿瘤和催化活性,因此本文报道的结果对于进一步作为具有优化释放模式的药物输送系统或作为原位催化剂输送在均相催化中的新概念开发的潜在材料具有重要意义。

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