Synthesis and characterization of citrate-capped gold nanoparticles and their application in selective detection of creatinine (A kidney biomarker)

Akriti Tirkey, Punuri Jayasekhar Babu
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引用次数: 1

Abstract

A simple, sensitive, and highly selective detection method was developed for creatinine using citrate-capped gold nanoparticles (C-AuNPs). TEM analysis confirmed the synthesis of the C-AuNPs and they were mostly spherical in shape. FTIR data showed peaks at 3302 cm−1, 1635 cm−1, 1219 cm−1 and 771 cm−1 indicating the presence of O–H, C=C, C–O, C–C groups on the surface of the synthesized C-AuNPs. XRD analysis revealed peaks at 33.8, 44.4, 64.6, 77.5, and 81.6° confirming the crystalline nature of the C-AuNPs. The principle of this method is based on the aggregation of C-AuNPs induced by the creatinine molecules which has been successfully employed for the colorimetric detection of creatinine ranging from 0.3 to 0.8 μg/100 μl (3–8 ppm). The degree of aggregation of C-AuNPs was found to have a linear relationship with the concentration of creatinine which allows the development of a colour gradient based on the varying creatinine concentrations. UV–Vis spectrophotometric analysis further confirmed the selectivity of the method among different analytes such as ascorbic acid, nicotinic acid, polyvinyl pyrrolidone, glucose, uric acid, and bovine serum albumin. It has also been successfully applied for the detection of creatinine in urine mimic samples with good recovery rates. Therefore, this method can be successfully employed for both qualitative and quantitative analysis of creatinine.

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柠檬酸盐封端的金纳米粒子的合成、表征及其在选择性检测肌酐(肾脏生物标志物)中的应用
使用柠檬酸盐封端的金纳米粒子(C-AuNPs)开发了一种简单、灵敏、高选择性的肌酸酐检测方法。TEM分析证实了C-AuNPs的合成,并且它们大多是球形的。FTIR数据显示,在3302 cm−1、1635 cm−1和1219 cm−1处出现峰值,表明合成的C-AuNPs表面存在O–H、C=C、C–O、C–C基团。XRD分析显示,在33.8°、44.4°、64.6°、77.5°和81.6°处有峰,证实了C-AuNPs的结晶性质。该方法的原理基于肌酸酐分子诱导的C-AuNPs聚集,已成功用于比色检测范围为0.3至0.8μg/100μl(3–8 ppm)的肌酸酐。发现C-AuNP的聚集程度与肌酸酐浓度呈线性关系,这允许基于变化的肌酸酐浓度形成颜色梯度。紫外-可见分光光度分析进一步证实了该方法在抗坏血酸、烟酸、聚乙烯吡咯烷酮、葡萄糖、尿酸和牛血清白蛋白等不同分析物中的选择性。它还成功地应用于尿液模拟样品中肌酸酐的检测,具有良好的回收率。因此,该方法可以成功地用于肌酸酐的定性和定量分析。
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