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Ratiometric Time-Gated Luminescence Probe for Hydrogen Sulfide Based on Lanthanide Complexes

机译:基于镧系元素配合物的硫化氢比例门控发光探针

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Developments of ratiometric bioprobes are highly appealing due to the superiority of their self-calibration capability for the quantitative biotracking. In this work, we designed and synthesized a novel lanthanide complex-based ratiometric luminescence probe, [4'-(2,4-dinitrophenyloxy)-2,2':6',2"-terpyridine-6,6"-diyl]bis(methylenenitrilo) tetrakis(acetate)-Eu3+/Tb3+ (NPTTA-Eu3+/Tb3+), for the specific recognition and quantitative time-gated luminescence detection of hydrogen sulfide (H2S) in aqueous and living cell samples. Due to the presence of the photoinduced electron transfer (PET) process from the terpyridine-Eu3+/Tb3+ moiety to 2,4-dinitrophenyl (DNP), the probe itself is weakly luminescent. In physiological pH aqueous media, the reaction of NPTTA-Eu3+/Tb3+ with H2S leads to the cleavage of DNP moiety from the probe molecule, which affords the deprotonated (4'-hydroxy-2,2':6',2"-terpyridine-6,6"-diyl)bis(methylenenitrilo) tetrakis(acetate)-Eu3+/Tb3+ and terminates the PET process. Meanwhile, the intensity of Tb3+ emission at 540 nm is remarkably increased, while that of the Eu3+ emission at 610 nm is slightly decreased. After the reaction, the intensity ratio of Tb3+ emission to Eu3+ emission, I-540/I-610, was similar to 220-fold increased, and the dose-dependent enhancement of I-540/I-610 showed a good linearity upon the increase of H2S concentration with a detection limit of 3.5 nM. This unique luminescence response allowed NPTTA-Eu3+/Tb3+ to be conveniently used as a ratiometric probe for the time-gated luminescence detection of H2S with I540/I610 as a signal. In addition, the applicability of the probe for the quantitative time-gated luminescence imaging of intracellular H2S in living cells was investigated. The results demonstrated the efficacy and advantage of the new probe for the time-gated luminescence cell imaging application.
机译:比例生物探针的开发由于其对定量生物跟踪的自校准能力的优越性而极具吸引力。在这项工作中,我们设计和合成了一种新型的基于镧系元素配合物的比例发光探针[4'-(2,4-二硝基苯氧基)-2,2':6',2“-吡啶-6,6”-二基]双(亚甲基腈)四(乙酸)酯-Eu3 + / Tb3 +(NPTTA-Eu3 + / Tb3 +),用于水和活细胞样品中硫化氢(H2S)的特异性识别和定量门控发光检测。由于存在从三联吡啶-Eu3 + / Tb3 +部分到2,4-二硝基苯基(DNP)的光致电子转移(PET)过程,因此探针本身的发光强度很小。在生理pH水性介质中,NPTTA-Eu3 + / Tb3 +与H2S的反应导致探针分子裂解DNP部分,从而提供去质子化的(4'-羟基-2,2':6',2“-吡啶-6,6“-二基)双(亚甲基腈)四(乙酸)酯-Eu3 + / Tb3 +并终止PET工艺。同时,在540nm处的Tb3 +发射的强度显着增加,而在610nm处的Eu3 +发射的强度稍微降低。反应后,Tb3 +发射与Eu3 +发射的强度比I-540 / I-610增加了约220倍,并且I-540 / I-610的剂量依赖性增强显示出与Tb3 +发射强度有关的线性关系。 H2S浓度增加,检出限为3.5 nM。这种独特的发光响应使NPTTA-Eu3 + / Tb3 +可以方便地用作比率探针,以I540 / I610作为信号对H2S进行时间门控发光检测。此外,还研究了该探针在活细胞中细胞内H2S的定量门控发光成像中的适用性。结果证明了该新型探针在时间门控发光细胞成像应用中的功效和优势。

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