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Design and tuning of ionic liquid–based HNO donor through intramolecular hydrogen bond for efficient inhibition of tumor growth

机译:通过分子内氢键来设计和调整离子液体液体的HNO供体,以便于肿瘤生长的有效抑制作用

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Developing ionic liquid (IL) drugs broaden new horizons in pharmaceuticals. The tunable nature endows ILs with capacity to delivery active ingredients. However, the tunability is limited to screen ionic components, and none realizes the kinetic tuning of drug release, which is a key challenge in the design of IL drugs. Here, a series of ILs are developed using biocompatible ionic components, which realizes absorption of gaseous NO to yield IL-NONOates. These IL-NONOates serve as HNO donors to release active ingredient. The release kinetics can be tuned through configuring the geometric construction of ILs (release half-lives, 4.2 to 1061 min). Mechanism research indicates that the tunability depends on the strength of intramolecular hydrogen bond. Furthermore, the IL-based HNO donors exert pharmacological potential to inhibit tumor progression by regulating intratumoral redox state. Coupled with biosafety, these IL-based HNO donors with facile preparation and tunable functionalization can be promising candidates for pharmaceutical application.
机译:开发离子液体(IL)药物在药物中拓宽新的视野。可调谐性质赋予ILS递送活性成分。然而,可调性仅限于筛选离子组分,没有意识到药物释放的动力学调整,这是IL药物设计中的关键挑战。这里,使用生物相容性离子组分开发了一系列ILS,其实现了气态NO的吸收以产生IL-非盐。这些IL-非盐作为HNO供体,以释放活性成分。可以通过配置ILS的几何结构(释放半衰期,4.2至1061分钟)来调整释放动力学。机制研究表明,可调性取决于分子内氢键的强度。此外,基于IL的HNO供体施加药理学潜力来通过调节肿瘤氧化还原状态来抑制肿瘤进展。与生物安全相结合,这些基于IL的HNO供体,具有适合的制剂和可调官能化,可以是制药应用的候选人。

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