首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >A fluorometric and colorimetric method for determination of trypsin by exploiting the gold nanocluster-induced aggregation of hemoglobin-coated gold nanoparticles
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A fluorometric and colorimetric method for determination of trypsin by exploiting the gold nanocluster-induced aggregation of hemoglobin-coated gold nanoparticles

机译:通过利用金纳米蛋白凝血金纳米粒子的金纳米蛋白酶诱导的金纳米蛋白酶诱导的聚集来测定胰蛋白酶的荧光和比色方法

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摘要

A dual-signal assay is described for the determination of trypsin based on the use of gold nanoparticles (AuNPs) that aggregate in the presence of gold nanoclusters (AuNCs) due to electrostatic interaction. This is accompanied by a color change from red to blue. However, if hemoglobin (Hb) is present in the solution, it will attach to the surface of AuNPs, thus preventing aggregation. The Hb-coated AuNPs quench the fluorescence of AuNCs. Trypsin can hydrolyze Hb and destroy the protective coating ofHb on the AuNPs. As a result, AuNP aggregation will occur after the addition of AuNCs, and the blue fluorescence of the AuNCs with 365 nm excitation and 455 nm maximum emission peak is recovered. Thus, trypsin can be determined by measurement of fluorescence emission intensity. Additionally, trypsin can be determined by the maximum absorption peak wavelength between 530 nm and 610 nm. Fluorescence increases linearly in the 10-2500 ng center dot mL-1 concentration range, and absorbance in the 202000 ng center dot mL-1 concentration range. The limits of detection are 4.6 ng center dot mL-1 (fluorometry) and 8.4 ng center dot mL-1 (colorimetry), respectively. The assay is sensitive and selective, and can be applied to the determination of trypsin in serum.
机译:基于在由于静电相互作用的情况下,基于使用金纳米蛋白(aunc)的金纳米颗粒(aunc)在存在下聚集的金纳米颗粒(aunc)来确定胰蛋白酶的双信号测定。这伴随着从红色到蓝色的颜色变化。但是,如果溶液中存在血红蛋白(HB),则它将附着在AUNP的表面上,从而防止聚集。 HB涂覆的aUnps猝灭Auncs的荧光。胰蛋白酶可以水解HB并破坏AUNPS上的HB的保护涂层。结果,在添加Auncs之后将发生AuNP聚集,并且恢复具有365nm激励和455nm最大发射峰的Aunc的蓝色荧光。因此,胰蛋白酶可以通过测量荧光发射强度来确定。另外,胰蛋白酶可以通过530nm和610nm之间的最大吸收峰值波长来确定。荧光在10-2500ng中心点ML-1浓度范围内线性增加,并且在202000ng中心点ML-1浓度范围内的吸光度。检测限为4.6 ng中心点M1-1(荧光测定法)和8.4ng中心点M1-1(比色法)。测定是敏感和选择性的,并且可以应用于血清中胰蛋白酶的测定。

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