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首页> 外文期刊>High Energy Chemistry >Detection of Analytes from Gas Phase Using Fluorophores and Host-Guest Complexes Incorporated into Lipid Bilayers on Silica Gel Nanoparticles
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Detection of Analytes from Gas Phase Using Fluorophores and Host-Guest Complexes Incorporated into Lipid Bilayers on Silica Gel Nanoparticles

机译:使用荧光团和宿主 - 访客复合物从气相中掺入硅胶纳米粒子上的脂质双层的分析物

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The aim of this work was to develop chemosensors by analogy with bioreceptors based on lipid membranes stabilized on silica gel nanoparticles. Dansylglycine (DG) and a host-guest complex of DG with cucurbituril CB[8] were used as receptor fluorophores, and naphthalene and trimethylamine (TMA) in a gas phase were used as analytes. Stabilized lipid bilayers (SLBs) were obtained by the sorption of bilayer liposomes on nanoparticles under conditions that ensure the rupture of liposomes and the formation of a flat bilayer. The binding of CB[8] to SLB was performed for the first time and detected by measuring the fluorescence of the thiazole orange complex with CB[8] in a supernatant. The formation of the DG@CB[8] complex in water and a membrane manifested itself in F-DG quenching and a shift of the F-DG maximum toward short or long waves in water and in the membrane, respectively. On naphthalene excitation at 290 nm, the F-DG response was due to energy transfer from naphthalene to DG. The F-DG sharply decreased in the presence of TMA-H2O vapors, but it increased above the initial value upon the removal of H2O vapor. It was found that, unlike dyes embedded in a lipid matrix or sorbed on nanoparticles, the F-DG response for host-guest complexes was proportional to analyte concentration, and the F-DG wavelength did not change with analyte concentration.
机译:这项工作的目的是通过基于硅胶凝胶纳米粒子稳定的脂质膜的生物膜来制育化学传感器。 Dg的二甘氨酸(DG)和宿主 - 客户综合体用作受体荧光团,用萘和三甲胺(TMA)以气相用作分析物。通过在保证脂质体破裂和形成扁平双层的条件下通过双层脂质体对纳米颗粒进行双层脂质体的吸附获得稳定的脂质双层(SLB)。首次进行Cb [8]至SLB的结合,并通过在上清液中测量噻唑橙色络合物的荧光来检测。在水中的DG @ CB [8]络合物的形成分别在水中表现为F-DG淬火和朝向水中的短或长波的F-DG最大值的偏移。在290nm处的萘激发上,F-DG响应是由于从萘的能量转移到DG。在TMA-H2O蒸汽存在下,F-DG在存在下急剧下降,但在去除H2O蒸汽时,它在初始值上方增加。结果发现,与脂质基质中的染料不同,纳米颗粒上的含水剂,对宿主 - 客户复合物的F-DG响应与分析物浓度成比例,并且F-DG波长与分析物浓度没有变化。

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