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基于脱铁铁蛋白组装的镧系配合物-罗丹明荧光共振能量转移体系的比率型时间门控荧光探针用于一氧化氮检测。

Ratiometric Time-Gated Luminescence Probe for Nitric Oxide Based on an Apoferritin-Assembled Lanthanide Complex-Rhodamine Luminescence Resonance Energy Transfer System.

机构信息

State Key Laboratory of Fine Chemicals, School of Chemistry, Dalian University of Technology , Dalian 116024, China.

出版信息

Anal Chem. 2015 Nov 3;87(21):10878-85. doi: 10.1021/acs.analchem.5b02347. Epub 2015 Oct 22.

Abstract

Using apoferritin (AFt) as a carrier, a novel ratiometric luminescence probe based on luminescence resonance energy transfer (LRET) between a Tb(3+) complex (PTTA-Tb(3+)) and a rhodamine derivative (Rh-NO), PTTA-Tb(3+)@AFt-Rh-NO, has been designed and prepared for the specific recognition and time-gated luminescence detection of nitric oxide (NO) in living samples. In this LRET probe, PTTA-Tb(3+) encapsulated in the core of AFt is the energy donor, and Rh-NO, a NO-responsive rhodamine derivative, bound on the surface of AFt is the energy acceptor. The probe only emits strong Tb(3+) luminescence because the emission of rhodamine is switched off in the absence of NO. Upon reaction with NO, accompanied by the turn-on of rhodamine emission, the LRET from Tb(3+) complex to rhodamine occurs, which results in the remarkable increase and decrease of the long-lived emissions of rhodamine and PTTA-Tb(3+), respectively. After the reaction, the intensity ratio of rhodamine emission to Tb(3+) emission, I565/I539, is ∼24.5-fold increased, and the dose-dependent enhancement of I565/I539 shows a good linearity in a wide concentration range of NO. This unique luminescence response allowed PTTA-Tb(3+)@AFt-Rh-NO to be conveniently used as a ratiometric probe for the time-gated luminescence detection of NO with I565/I539 as a signal. Taking advantages of high specificity and sensitivity of the probe as well as its good water-solubility, biocompatibility, and cell membrane permeability, PTTA-Tb(3+)@AFt-Rh-NO was successfully used for the luminescent imaging of NO in living cells and Daphnia magna. The results demonstrated the efficacy of the probe and highlighted it's advantages for the ratiometric time-gated luminescence bioimaging application.

摘要

利用脱铁铁蛋白(AFt)作为载体,设计并制备了一种基于 Tb(3+)配合物(PTTA-Tb(3+))与罗丹明衍生物(Rh-NO)之间的荧光共振能量转移(LRET)的新型比率荧光探针 PTTA-Tb(3+)@AFt-Rh-NO,用于在活样品中对一氧化氮(NO)进行特异性识别和时间门控荧光检测。在这个 LRET 探针中,包封在 AFt 核中的 PTTA-Tb(3+)是能量供体,而结合在 AFt 表面的对 NO 有响应的罗丹明衍生物 Rh-NO 是能量受体。在不存在 NO 的情况下,由于罗丹明的发射被关闭,探针仅发出强的 Tb(3+)荧光。与 NO 反应后,伴随着罗丹明发射的开启,发生从 Tb(3+)配合物到罗丹明的 LRET,分别导致罗丹明和 PTTA-Tb(3+)的长寿命发射的显著增加和减少。反应后,罗丹明发射与 Tb(3+)发射的强度比,I565/I539,增加了约 24.5 倍,并且 I565/I539 的剂量依赖性增强在宽浓度范围内具有良好的线性关系。这种独特的荧光响应使 PTTA-Tb(3+)@AFt-Rh-NO 能够方便地用作比率荧光探针,用于以 I565/I539 作为信号的 NO 的时间门控荧光检测。利用探针的高特异性和灵敏度以及其良好的水溶性、生物相容性和细胞膜通透性,成功地将 PTTA-Tb(3+)@AFt-Rh-NO 用于活细胞和水蚤中的 NO 的荧光成像。结果证明了探针的功效,并突出了它在比率时间门控荧光生物成像应用中的优势。

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