多功能超分子受体:水离子识别,HCl感应和细胞毒性电位。

IF 2.9 3区 化学 Q1 CHEMISTRY, ORGANIC
Damian Jagleniec, Katarzyna Sęktas, Łukasz Dobrzycki, Miłosz Ludwinek, Anna Nasulewicz-Goldeman, Joanna Wietrzyk, Jan Romański
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引用次数: 0

摘要

我们描述了三种超分子受体的设计、合成和结合行为,目的是在水和有机介质中选择性离子对识别。结合方酰胺和叔胺的功能,这些受体对阴离子和离子对表现出很强的亲和力,特别是在钠离子存在时。值得注意的是,受体1中叔胺的质子化通过增加方酰胺质子的酸度显著提高了其水溶性和阴离子结合亲和力,从而加强了与氯离子的相互作用,即使在竞争激烈的富水环境中也是如此。用芘修饰的受体3作为荧光传感器,能够将氯从水相中提取到有机溶剂中,在分子传感和离子传输方面具有潜在的应用前景。初步的生物学分析显示,这些化合物在特定细胞系上表现出与顺铂相当的细胞毒活性,表明它们有望成为治疗药物。这项研究强调了多功能受体在水离子对识别和运输中的作用,对环境和生物医学应用都有意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multifunctional supramolecular receptors: aqueous ion recognition, HCl sensing and cytotoxic potential.

We describe the design, synthesis, and binding behavior of three supramolecular receptors aimed at selective ion-pair recognition in aqueous and organic media. Incorporating squaramide and tertiary amine functionalities, these receptors exhibit strong affinities for anions and ion pairs, especially in the presence of sodium cations. Notably, protonation of the tertiary amine in receptor 1 significantly enhances its water solubility and anion-binding affinity by increasing the acidity of the squaramide protons, thereby strengthening interactions with chloride anions even in competitive, water-rich environments. Receptor 3, modified with a pyrene unit, functions as a fluorescence sensor capable of extracting chloride from aqueous phases into organic solvents, indicating potential applications in molecular sensing and ion transport. Preliminary biological assays reveal that these compounds exhibit cytotoxic activity comparable to cisplatin on specific cell lines, suggesting promise as therapeutic agents. This study highlights the utility of multifunctional receptors in aqueous ion-pair recognition and transport, with implications for both environmental and biomedical applications.

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来源期刊
Organic & Biomolecular Chemistry
Organic & Biomolecular Chemistry 化学-有机化学
CiteScore
5.50
自引率
9.40%
发文量
1056
审稿时长
1.3 months
期刊介绍: Organic & Biomolecular Chemistry is an international journal using integrated research in chemistry-organic chemistry. Founded in 2003 by the Royal Society of Chemistry, the journal is published in Semimonthly issues and has been indexed by SCIE, a leading international database. The journal focuses on the key research and cutting-edge progress in the field of chemistry-organic chemistry, publishes and reports the research results in this field in a timely manner, and is committed to becoming a window and platform for rapid academic exchanges among peers in this field. The journal's impact factor in 2023 is 2.9, and its CiteScore is 5.5.
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