Heng Hui, Gu Qingyang, Jin Haibo, Shen Ping, Wei Jiaxin, Er Xinyu, Sun Jia
College of New Materials and Chemical Engineering, Beijing Institute of Petrochemical Technology, Beijing, 102617, China; Beijing Key Laboratory of Fuels Cleaning and Advanced Catalytic Emission Reduction Technology, Beijing, 102617, China.
College of New Materials and Chemical Engineering, Beijing Institute of Petrochemical Technology, Beijing, 102617, China; Beijing Key Laboratory of Fuels Cleaning and Advanced Catalytic Emission Reduction Technology, Beijing, 102617, China.
Talanta. 2024 Feb 1;268(Pt 1):125291. doi: 10.1016/j.talanta.2023.125291. Epub 2023 Oct 11.
A novel ratiometric fluorescence nanoprobe was developed to detect tryptophan enantiomers with high selectivity and sensitivity. Fluorescein (FL) was doped into SiO nanoparticles with little dye leakage, acting as an internal reference signal. The chiral center of L-histidine (L-His) was introduced by partially replacing the carboxyl on the surface of SiO. The response signal of Eu was coordinated with carboxyl to obtain the FL@SiO-Eu/His nanoprobe. The nanoprobe shows enantioselective luminescence responses for tryptophan enantiomers. The red emission of Eu can be effectively quenched by the tryptophan enantiomers, but the quenching efficiency is different due to the different interactions with the chiral recognition sites. The fluorescence intensity ratio (I/I) shows excellent linearity with tryptophan enantiomers in the range of 0-100 μM (R > 0.99). The limit of detection (LOD) is 1.0 μM and 1.3 μM for L-tryptophan (L-Trp) and D-tryptophan (D-Trp), respectively. The FL@SiO-Eu/His nanoprobe shows good selectivity and specific recognition in serum actual samples. In addition, the nanoprobe can realize visual detection under UV light due to the obvious color change. This work provides an innovative idea for the development of new probes in the detection field.
开发了一种新型比率荧光纳米探针,用于高选择性和高灵敏度地检测色氨酸对映体。将荧光素(FL)掺杂到SiO纳米颗粒中,染料泄漏很少,作为内部参考信号。通过部分取代SiO表面的羧基引入L-组氨酸(L-His)的手性中心。Eu的响应信号与羧基配位,得到FL@SiO-Eu/His纳米探针。该纳米探针对色氨酸对映体表现出对映选择性发光响应。色氨酸对映体可以有效猝灭Eu的红色发射,但由于与手性识别位点的相互作用不同,猝灭效率有所差异。荧光强度比(I/I)在0-100μM范围内与色氨酸对映体表现出良好的线性关系(R>0.99)。L-色氨酸(L-Trp)和D-色氨酸(D-Trp)的检测限分别为1.0μM和1.3μM。FL@SiO-Eu/His纳米探针在血清实际样品中表现出良好的选择性和特异性识别能力。此外,由于明显的颜色变化,该纳米探针可以在紫外光下实现可视化检测。这项工作为检测领域新型探针的开发提供了创新思路。