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首页> 外文期刊>Chemistry - A European Journal >A pH-Responsive Cleavage Route Based on a Metal–Organic Coordination Bond
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A pH-Responsive Cleavage Route Based on a Metal–Organic Coordination Bond

机译:基于金属-有机配位键的pH响应裂解途径

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摘要

The physical or chemical event that generally causes stimuli responses is limited to the formation or destruction of secondary forces, such as hydrogen bonding, hydrophobic effects, electrostatic interactions, and simple reactions. Here, pH-responsive behavior of metal–organic coordination bonding, which is intrinsic to natural systems (e.g., transferrin recycling in cells), is becoming a strong candidate for a new stimulus–responsive route. We have designed a simple pH-responsive release system by integrating a metal ion and ligand or self-assembling these species with biodegradable host molecules to form nanoparticles with “metal–ligand” or “host–metal–ligand” architectures. The cleavage of either or both the “metal–ligand” or the “host–metal” coordination bond in response to pH variations causes significant damage to the nanoparticles and the subsequent release of ligand molecules under designated pH conditions.
机译:通常引起刺激反应的物理或化学事件仅限于次级力的形成或破坏,例如氢键,疏水作用,静电相互作用和简单反应。在这里,金属-有机配位键的pH响应行为是自然系统固有的(例如,细胞中的转铁蛋白回收),正在成为新的刺激响应途径的强有力候选者。通过整合金属离子和配体或将这些物种与可生物降解的宿主分子自组装,以形成具有“金属-配体”或“主体-金属-配体”结构的纳米粒子,我们设计了一种简单的pH响应释放系统。响应pH值变化,“金属-配体”或“主体-金属”配位键中的一个或两个均断裂,会对纳米粒子造成重大损害,并随后在指定的pH条件下释放配体分子。

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