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在医学中实施 f 区金属离子:调节扩展大环的尺寸选择性。

Implementing f-Block Metal Ions in Medicine: Tuning the Size Selectivity of Expanded Macrocycles.

出版信息

Inorg Chem. 2019 Aug 19;58(16):10483-10500. doi: 10.1021/acs.inorgchem.9b01277. Epub 2019 Jun 27.

DOI:10.1021/acs.inorgchem.9b01277
PMID:31246017
Abstract

The f-block elements, which comprise both the lanthanide and actinide series, possess interesting spectroscopic, magnetic, and nuclear properties that make them uniquely suited for a range of biomedical applications. In this Forum Article, we provide a concise overview on the different ways that these elements are employed in medicine, highlighting their dual implementation in both diagnostic and therapeutic applications. A key requirement for the use of these labile metal ions in medicine is a suitable chelating agent that controls their in vivo biodistribution. Toward this goal, we also report our research describing the synthesis and characterization of a rigid 18-membered macrocycle called CHX-macropa, an analogue of the previously reported nonrigid ligand macropa ( , , 3331). The lanthanide coordination chemistry of CHX-macropa is explored in detail by pH potentiometry and density functional theory (DFT) calculations. These studies reveal that CHX-macropa exhibits an enhanced thermodynamic selectivity for large over small lanthanides in comparison to its nonrigid analogue macropa. DFT calculations suggest that a key factor in the enhanced selectivity of this ligand for the large f-block ions is its rigid macrocyclic core, which cannot adequately distort to interact effectively with small ions. On the basis of its high affinity for large f-block ions, the design strategies implemented in CHX-macropa may be valuable for applying these elements in the diagnosis or treatment of disease.

摘要

f 区元素包括镧系元素和锕系元素,具有有趣的光谱、磁性和核性质,使它们非常适合于一系列生物医学应用。在这篇论坛文章中,我们提供了一个简洁的概述,介绍了这些元素在医学中的不同应用方式,强调了它们在诊断和治疗应用中的双重应用。在医学中使用这些不稳定金属离子的一个关键要求是使用合适的螯合剂来控制它们在体内的生物分布。为此,我们还报告了我们的研究,描述了一种称为 CHX-macropa 的刚性 18 元大环的合成和表征,这是先前报道的非刚性配体 macropa(,, 3331)的类似物。通过 pH 电位滴定和密度泛函理论(DFT)计算详细研究了 CHX-macropa 的镧系配位化学。这些研究表明,与非刚性类似物 macropa 相比,CHX-macropa 对大的镧系元素与小的镧系元素的热力学选择性增强。DFT 计算表明,该配体对大 f 区离子的增强选择性的一个关键因素是其刚性的大环核,该核不能充分变形以与小离子有效相互作用。基于其对大 f 区离子的高亲和力,在 CHX-macropa 中实施的设计策略可能对应用这些元素进行疾病的诊断或治疗具有重要价值。

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