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A metal-enhanced fluorescence study of primary amines: determination of aminoglycosides with europium and gold nanoparticles

机译:伯胺的金属增强荧光研究::和金纳米颗粒的测定氨基糖苷

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This paper describes a lipoic acid capped europium nanoparticle-based assay for the fluorimetric detection of primary amines. The assay is based on fluorescence quenching resulting from complex formation between amines and lipoic acid on the surface of europium nanoparticles. For the application of the assay, the aminoglycosides were determined in pharmaceuticals and milk. The determination of the aminoglycosides were conducted via fluorescence quenching at 315 nm (??ex = 280 nm) at a pH of 5. The metal enhanced fluorescence method with gold nanoparticles was used, in order to enhance the fluorescence of europium nanoparticles. In this manner, the detection limits of aminoglycosides were lowered. The Sterna€“Volmer constants and the ground-state UV spectra of interaction proved the static quenching that stemmed from the reaction between amines and lipoic acid. Three members of aminoglycosides; amikacin, gentamicin and tobramycin were quantified in the range of 0.75a€“27.5 ??g mLa?’1, 0.40a€“26 ??g mLa?’1 and 0.20a€“25 ??g mLa?’1, respectively.
机译:本文介绍了一种基于硫辛酸封端的euro纳米颗粒的荧光检测伯胺的检测方法。该测定基于荧光猝灭,所述荧光猝灭是由nanoparticles和纳米颗粒表面上的胺和硫辛酸之间的络合物形成而引起的。对于该测定的应用,在药物和牛奶中测定了氨基糖苷类。氨基糖苷类的测定是通过在pH为5的315 nm(λex= 280 nm)处进行荧光猝灭来进行的。为了增强of纳米颗粒的荧光,使用了金纳米颗粒的金属增强荧光法。以这种方式,降低了氨基糖苷的检测限。斯特纳-沃尔默常数和相互作用的基态紫外光谱证明了由胺与硫辛酸之间的反应引起的静态猝灭。氨基糖苷的三个成员;阿米卡星,庆大霉素和妥布霉素的定量范围分别为0.75a“ 27.5 g gmLa” 1、0.40a“ 26 g gmLa” 1和0.20a“ 25 g gmLa” 1,分别。

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