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一种基于新型锌基金属有机骨架的“开-关”荧光传感器,用于顺序检测地拉罗司和替加环素。

An "ON-OFF" fluorescent sensor based on a novel zinc-based flower-like structured metal-organic framework for sequential detection of deferasirox and tigecycline.

机构信息

School of Pharmacy, Fujian Medical University, Xuefu North Road University Town, Fuzhou, Fujian, 350122, China.

Emergency Medicine Center, The First Affiliated Hospital of Fujian Medical University, Fuzhou, Fujian, 350002, China.

出版信息

Anal Chim Acta. 2023 Oct 9;1277:341681. doi: 10.1016/j.aca.2023.341681. Epub 2023 Jul 31.

Abstract

Deferasirox (DEF) is essential for patients with thalassemia requiring long-term transfusion therapy. Tigecycline (TIGE) is a first-line drug for the clinical treatment of complex, severe bacterial infections. The two drugs can be coordinated to treat Pseudomonas aeruginosa infections. Easy and efficient techniques for monitoring these two drugs in biological samples are few. Metal-organic framework (Zn-MOF) prepared from zinc nitrate hexahydrate and dithioglycolic acid has a flower structure. Interestingly, Zn-MOF can cause DEF to aggregate on it and induce DEF luminescence. The principle may be that Zn-MOF limits the vibration and rotation of DEF to avoid its nonradiative jump, which triggers aggregation-induced emission (AIE) and exhibits intense fluorescence. Further investigation revealed that TIGE could decompose Zn-MOF, thus alleviating the inhibitory effect of Zn-MOF on DEF and reducing the fluorescence intensity of DEF@Zn-MOF. A DEF/TIGE detection biosensor was created based on the fluorescence "turn-on" effect of Zn-MOF on DEF and the fluorescence "turn-off" effect of TIGE on DEF@Zn-MOF. The proposed technique was subsequently used to identify DEF/TIGE levels in pharmaceuticals and human plasma. The mean values for the percentage of the labeled amount of DEF/TIGE in DEF dispersible tablets/TIGE injection were 104.5 and 104.9%, respectively. The detection limits for the fluorescence detection of DEF and TIGE were 3.6 and 1.2 nM, respectively. This fluorescence assay is the first application of MOF to the simultaneous detection of DEF and TIGE and has the advantages of rapid sensitivity and high selectivity, providing a new strategy for drug detection.

摘要

地拉罗司(DEF)是需要长期输血治疗的地中海贫血患者的必备药物。替加环素(TIGE)是治疗复杂、严重细菌感染的一线药物。这两种药物可以协同治疗铜绿假单胞菌感染。用于监测这两种药物在生物样本中的简便高效技术很少。由六水硝酸锌和二硫醇酸制备的金属-有机骨架(Zn-MOF)具有花状结构。有趣的是,Zn-MOF 可以使 DEF 在其表面聚集并诱导 DEF 发光。其原理可能是 Zn-MOF 限制 DEF 的振动和旋转,从而避免其无辐射跃迁,触发聚集诱导发射(AIE)并表现出强烈的荧光。进一步的研究表明,TIGE 可以分解 Zn-MOF,从而减轻 Zn-MOF 对 DEF 的抑制作用并降低 DEF@Zn-MOF 的荧光强度。基于 Zn-MOF 对 DEF 的荧光“开启”效应和 TIGE 对 DEF@Zn-MOF 的荧光“关闭”效应,创建了一种 DEF/TIGE 检测生物传感器。该技术随后用于识别药物和人血浆中的 DEF/TIGE 水平。DEF 分散片/TIGE 注射液中标记的 DEF/TIGE 含量的平均值分别为 104.5%和 104.9%。DEF 和 TIGE 的荧光检测的检测限分别为 3.6 和 1.2 nM。这种荧光分析方法是 MOF 首次应用于同时检测 DEF 和 TIGE,具有快速灵敏、选择性高的优点,为药物检测提供了新策略。

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