Colorimetric sensor for cimetidine detection in human urine based on D-xylose protected gold nanoparticles

被引:7
作者
Hu, Fan [1 ]
Wu, PinPing
Wang, Ruya
Liu, Wei
He, Hua [1 ,2 ,3 ]
机构
[1] China Pharmaceut Univ, Dept Analyt Chem, Nanjing 211198, Jiangsu, Peoples R China
[2] China Pharmaceut Univ, Key Lab Biomed Funct Mat, Nanjing 211198, Jiangsu, Peoples R China
[3] China Pharmaceut Univ, Key Lab Drug Qual Control & Pharmacovigilance, Minist Educ, Nanjing 211198, Jiangsu, Peoples R China
关键词
FLOW-INJECTION; HUMAN PLASMA; ASSAY; HPLC; PHARMACEUTICALS; AGGREGATION; RANITIDINE; NANOCOMPOSITES; CHROMATOGRAPHY; RECOGNITION;
D O I
10.1039/c8an00499d
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Herein, a simple, novel, and rapid colorimetric sensor for cimetidine (Cim) detection based on D-xylose protected gold nanoparticles (D-x@AuNPs) has been developed for the first time. The D-x@AuNPs were characterized by UV-vis, TEM and FT-IR techniques. Cimetidine causes the aggregation of D-x@AuNPs due to the formation of a strong covalent Au-N bond and electrostatic binding. As the cimetidine concentration increased, the color of the solutions gradually changed from wine-red to blue, and the large absorption band shifted from 533 to 680 nm upon D-x@AuNP aggregation. The effects of different experimental parameters were investigated. A comparative study on the detection of Cim using citrated capped AuNPs and D-x@AuNPs was presented. Under optimum conditions, the UV-vis spectra showed that the absorption ratio (A(680)/A(533)) increased linearly with the concentration of cimetidine in the range of 7 x 10(-8) to 3 x 10(-6) M with a correlation coefficient of 0.9956 and a limit of detection of 1 x 10(-8) M without needing any complicated instruments. The selectivity of the D-x@AuNP detection system for cimetidine was excellent when compared with other ions and analytes. Due to their rapid and visible color changes, and their remarkable selectivity, the D-x@AuNPs synthesized in this study were suitable and could be applied to the detection of cimetidine in human urine.
引用
收藏
页码:2369 / 2376
页数:8
相关论文
共 45 条
[1]   Simple and universal HPLC-UV method to determine cimetidine, ranitidine, famotidine and nizatidine in urine: Application to the analysis of ranitidine and its metabolites in human volunteers [J].
Ashiru, Diane A. I. ;
Patel, Rajesh ;
Basit, Abdul W. .
JOURNAL OF CHROMATOGRAPHY B-ANALYTICAL TECHNOLOGIES IN THE BIOMEDICAL AND LIFE SCIENCES, 2007, 860 (02) :235-240
[2]   BIOANALYSIS OF CIMETIDINE BY HIGH-PERFORMANCE LIQUID-CHROMATOGRAPHY [J].
BARTLETT, JM ;
SEGELMAN, AB .
JOURNAL OF CHROMATOGRAPHY, 1983, 255 (JAN) :239-245
[3]  
Berzas J. J., 2011, ANAL SCI, V27, P427
[4]  
Berzas Nevado J. J., 2013, J CHROMATOGR B, V921, P56
[5]   Gemini Imidazolium Amphiphiles for the Synthesis, Stabilization, and Drug Delivery from Gold Nanoparticles [J].
Casal-Dujat, Lucia ;
Rodrigues, Mafalda ;
Yaguee, Alex ;
Calpena, Anna C. ;
Amabilino, David B. ;
Gonzalez-Linares, Javier ;
Borras, Miquel ;
Perez-Garcia, Lluisa .
LANGMUIR, 2012, 28 (05) :2368-2381
[6]   Colorimetric Detection of Pb2+ Using Glutathione Functionalized Gold Nanoparticles [J].
Chai, Fang ;
Wang, Chungang ;
Wang, Tingting ;
Li, Lu ;
Su, Zhongmin .
ACS APPLIED MATERIALS & INTERFACES, 2010, 2 (05) :1466-1470
[7]   Determination of ranitidine, nizatidine, and cimetidine by a sensitive fluorescent probe [J].
Chang, Yin-Xia ;
Qiu, Yue-Qin ;
Du, Li-Ming ;
Li, Chang-Feng ;
Guo, Min .
ANALYST, 2011, 136 (20) :4168-4173
[8]   N,N′-Di-carboxymethyl perylene diimide functionalized magnetic nanocomposites with enhanced peroxidase-like activity for colorimetric sensing of H2O2 and glucose [J].
Chen, Miaomiao ;
Sun, Lifang ;
Ding, Yanan ;
Shi, Zhiqiang ;
Liu, Qingyun .
NEW JOURNAL OF CHEMISTRY, 2017, 41 (13) :5853-5862
[9]   Colorimetric detection of Al3+ ions using triazole-ether functionalized gold nanoparticles [J].
Chen, Yu-Ching ;
Lee, I-Lin ;
Sung, Yi-Ming ;
Wu, Shu-Pao .
TALANTA, 2013, 117 :70-74
[10]   A highly sensitive colorimetric metalloimmunoassay based on copper-mediated etching of gold nanorods [J].
Cheng, Fangbin ;
Chen, Zhaopeng ;
Zhang, Zhiyang ;
Chen, Lingxin .
ANALYST, 2016, 141 (06) :1918-1921