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将具有聚集诱导发光(AIE)效应的铂纳米簇封装到金属有机框架中,作为一种用于鉴别检测双膦酸盐药物的新型荧光纳米探针。

Encapsulating Pt NCs with an AIE effect into a metal-organic framework as a novel fluorescence nanoprobe for discriminatively detecting bisphosphonate drugs.

作者信息

Du Juan, Chen Jinwen, Tong Huixiao, Liao Shenghua

机构信息

Department of Analytical Chemistry, School of Science, China Pharmaceutical University, Nanjing, 211198, Jiangsu, People's Republic of China.

出版信息

Anal Bioanal Chem. 2025 Aug 30. doi: 10.1007/s00216-025-06075-9.

Abstract

Fluorescent metal organic frameworks (FMOFs) constructed by encapsulating aggregation-induced emission luminogens (AIEgens) into frameworks have garnered increasing attention due to their ability to overcome the aggregation-caused quenching (ACQ) effect of traditional fluorescent materials such as organic dyes, quantum dots, and up-conversion nanoparticles. However, conventional AIEgens usually contain aromatic groups that may pose potential health risks. Additionally, the quality of bisphosphonates (BPs), first-line treatment drugs in skeletal-related diseases, is critical to assure their effectiveness and safety. In this work, a new nanocomposite, Pt NCs@ZIF-8, was designed by encapsulating platinum nanoclusters (Pt NCs) with aggregation-induced emission (AIE) properties into zeolitic imidazolate framework-8 (ZIF-8) through self-assembly between Zn and Pt NCs. Owing to the spatial confinement provided by ZIF-8 and the AIE effect of Pt NCs, the resulting Pt NCs@ZIF-8 nanocomposite presents excellent photostability and anti-photobleaching. Furthermore, the framework of Pt NCs@ZIF-8 collapses in the presence of BP drugs due to the strong coordination interaction between the P = O groups in BPs and the Zn in ZIF-8, leading to the release of Pt NCs. This release of Pt NCs causes effective fluorescence quenching of the Pt NCs@ZIF-8 nanocomposite, resulting from the increasing intramolecular motion of surface ligands, glutathione (GSH), on Pt NCs. Therefore, a new Pt NCs@ZIF-8-based nanoprobe has been rationally designed for BP detection. More importantly, our designed Pt NCs@ZIF-8-based nanoprobe also presents excellent discrimination capability toward four structurally similar BPs-Etidronate, Clodronate, Alendronate, and Risedronate, as confirmed by statistical techniques such as principal component analysis (PCA) and hierarchical clustering analysis (HCA). Finally, the proposed Pt NCs@ZIF-8 nanoprobe was successfully applied to quantify the labeled amount percentage of commercially available Sodium Risedronate and Sodium Alendronate tablets, achieving satisfactory limits of detection (LOD) spanning from 1.2 to 8.8 µM and excellent recovery ranging from 97.50% to 102.6%. This work not only provides a novel and convenient strategy for detecting and distinguishing BPs but also demonstrates the potential application of metal-organic frameworks encapsulating metal nanoclusters with AIE properties in pharmaceutical quality control.

摘要

通过将聚集诱导发光发光体(AIEgens)封装到框架中构建的荧光金属有机框架(FMOFs),因其能够克服传统荧光材料(如有机染料、量子点和上转换纳米颗粒)的聚集诱导猝灭(ACQ)效应而受到越来越多的关注。然而,传统的AIEgens通常含有可能带来潜在健康风险的芳香族基团。此外,骨骼相关疾病的一线治疗药物双膦酸盐(BPs)的质量对于确保其有效性和安全性至关重要。在这项工作中,通过锌与铂纳米团簇(Pt NCs)之间的自组装,将具有聚集诱导发光(AIE)特性的铂纳米团簇(Pt NCs)封装到沸石咪唑酯骨架-8(ZIF-8)中,设计了一种新型纳米复合材料Pt NCs@ZIF-8。由于ZIF-8提供的空间限制和Pt NCs的AIE效应,所得的Pt NCs@ZIF-8纳米复合材料具有优异的光稳定性和抗光漂白性能。此外,由于双膦酸盐中P = O基团与ZIF-8中的锌之间存在强配位相互作用,Pt NCs@ZIF-8的框架在双膦酸盐药物存在下会坍塌,导致Pt NCs的释放。Pt NCs的这种释放导致Pt NCs@ZIF-8纳米复合材料的有效荧光猝灭,这是由于Pt NCs表面配体谷胱甘肽(GSH)的分子内运动增加所致。因此,合理设计了一种基于Pt NCs@ZIF-8的新型纳米探针用于双膦酸盐检测。更重要的是,通过主成分分析(PCA)和层次聚类分析(HCA)等统计技术证实,我们设计的基于Pt NCs@ZIF-8的纳米探针还对四种结构相似的双膦酸盐——依替膦酸、氯膦酸、阿仑膦酸和利塞膦酸具有出色的区分能力。最后,所提出的Pt NCs@ZIF-8纳米探针成功应用于定量市售利塞膦酸钠和阿仑膦酸钠片剂的标记量百分比,实现了令人满意的检测限(LOD),范围为1.2至8.8 μM,回收率优异,范围为97.50%至102.6%。这项工作不仅为双膦酸盐的检测和区分提供了一种新颖便捷的策略,还展示了封装具有AIE特性的金属纳米团簇的金属有机框架在药物质量控制中的潜在应用。

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