Bifunctional gallium cation chelators

A. Polivanova, I. Solovieva, D. O. Botev, D. Y. Yuriev, A. Mylnikova, M. Oshchepkov
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Abstract

Objectives. The chemistry of 67Ga and 68Ga radionuclides plays a key role in nuclear medicine for applications in radiopharmaceuticals, in particular, in noninvasive in vivo molecular imaging techniques. The use of radiometals for labeling biomolecules typically requires the use of bifunctional chelators, which contain a functional group for covalent bonding with the targeting vector in addition to the polydentate fragment coordinating the metal. The aim of the present review article is to analyze the currently accumulated experimental material on the development and application of bifunctional chelators of gallium cations in medical research, as well as to identify the main requirements for the structure of the chelator and its complexes with 68Ga, which are used to create effective Gabased pharmaceutical preparations.Results. The review analyzed macrocyclic bifunctional chelators forming stable in vivo complexes with 68Ga and acyclic chelators, whose main advantage is faster complexation kinetics due to the short half-life of 68Ga. The advantages and disadvantages of both types of ligands were evaluated. In addition, a critical analysis of the binding constants and the conditions for the formation of complexes was presented. Examples of the influence of the geometry, lipophilicity, and total charge of the metal complex on the biodistribution of target radiopharmaceuticals were also given.Conclusions. Despite the progress made in the considered areas of bifunctional chelators, the problem of correlating the chemical structure of a metal-based radiopharmaceutical with its behavior in vivo remains important. Comparative studies of drugs having an identical targeting vector but containing different bifunctional chelating agents could help further elucidate the effectof metal chelate moiety on pharmacokinetics. In order to create effective bifunctional chelating agents, it is necessary to take into account such factors as the stability and inertness of the chelator and its complexes under physiological conditions, lipophilicity, complexation kinetics, chelation selectivity, combinatoriality of the basic structure, along with economic aspects, e.g., the availability of raw materials and the complexity of the synthesis scheme.
双功能镓阳离子螯合剂
目标。67Ga和68Ga放射性核素的化学性质在放射性药物的核医学应用中起着关键作用,特别是在无创体内分子成像技术中。使用放射性金属标记生物分子通常需要使用双功能螯合剂,该螯合剂除了包含与金属配合的多齿碎片外,还包含与靶向载体共价键的功能基团。本文综述了目前积累的镓离子双功能螯合剂在医学研究中的开发和应用的实验资料,并确定了用于制备有效的镓基药物制剂的螯合剂及其与68Ga配合物的主要结构要求。本文分析了与68Ga形成稳定体内配合物的大环双功能螯合剂和与68Ga形成稳定体内配合物的无环螯合剂的主要优点是由于68Ga的半衰期短,其络合动力学更快。评价了两种配体的优缺点。此外,还对配合物的结合常数和形成条件进行了分析。还举例说明了金属配合物的几何形状、亲脂性和总电荷对靶放射性药物生物分布的影响。尽管在双功能螯合剂的考虑领域取得了进展,但将金属基放射性药物的化学结构与其体内行为联系起来的问题仍然很重要。对具有相同靶向载体但含有不同双功能螯合剂的药物进行比较研究,有助于进一步阐明金属螯合剂部分对药代动力学的影响。为了创造有效的双功能螯合剂,有必要考虑这些因素,如螯合剂及其配合物在生理条件下的稳定性和惰性、亲脂性、络合动力学、螯合选择性、基本结构的组合性,以及经济方面,如原料的可用性和合成方案的复杂性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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