智能手机数字图像比色法测定止汗产品中铝的含量。

IF 1.8 Q3 PHARMACOLOGY & PHARMACY Turkish Journal of Pharmaceutical Sciences Pub Date : 2022-12-21 DOI:10.4274/tjps.galenos.2021.18828
Suad Abughrin, Usama Alshana, Jude Caleb
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引用次数: 1

摘要

目的:建立智能手机数字图像比色法(SDIC)检测止汗产品(app)中铝含量前与槲皮素螯合的测定方法。材料和方法:在聚四氟乙烯杯中封闭酸消解制备样品。然后用槲皮素作为螯合剂使铝在样品溶液中络合。将样品溶液转移到石英紫外/可见光检测微比皿中,在自制的比色盒中进行检测,该比色盒设计用于用智能手机相机捕获黄色复合物的图像。使用个人电脑ImageJ软件将图像的像素强度转换为数字进行定量。采用高效液相色谱-二极管阵列检测进行了独立研究,以验证所提出方法的准确性。结果:以三星C9智能手机为检测相机,选择感兴趣区域面积为6400 px2,比色盒侧边位置为最优条件,对距离检测相机10.0 cm的样品溶液进行图像采集,最佳络合条件为样品pH为5.5,样品体积为3.0 mL,络合时间为1.0 min,配体浓度为0.28 mmol L-1。方法的检出限为0.5 μmol L-1,校正图的决定系数(R2)为0.9981。结论:该方法可用于app中铝的测定,回收率为80.0 ~ 109.6%。
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Smartphone Digital Image Colorimetry for the Determination of Aluminum in Antiperspirant Products.

Objectives: This study aims to present a method for the determination of the aluminum in antiperspirant products (APPs) by chelating it with quercetin before its detection by smartphone digital image colorimetry (SDIC).

Materials and methods: Samples were prepared by closed-vessel acid digestion in PTFE cups. This was followed by complexation of aluminum in the sample solution using quercetin as a chelating agent. Sample solutions were transferred into a quartz ultraviolet/visible detection microcuvette for detection in a homemade colorimetric box designed for capturing images of the yellow complex with a smartphone camera. The pixel intensity of the images was converted to numbers for quantitation using ImageJ software for a personal computer. An independent study using high-performance liquid chromatography-diode-array detection was conducted to check the accuracy of the proposed method.

Results: Optimum SDIC conditions included a Samsung C9 smartphone as the detection camera, a cropped region of interest of 6400 px2, and the side position of the colorimetric box were selected for capturing the images of the sample solutions placed 10.0 cm from the detection camera, whereas optimum complexation conditions were found to be as sample pH of 5.5, sample volume of 3.0 mL, complexation time of 1.0 min and a ligand concentration of 0.28 mmol L-1. Analytical performance of the method included a limit of detection of 0.5 μmol L-1 and a coefficient of determination (R2) of the calibration graph of 0.9981.

Conclusion: The proposed method was successfully applied for the determination of aluminum in APPs with percentage recoveries ranging from 80.0 to 109.6%.

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来源期刊
CiteScore
3.60
自引率
5.90%
发文量
79
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