绿色传感器技术:利用日期核衍生碳点定量卡比多巴和电子波。

IF 3 3区 生物学 Q2 BIOCHEMICAL RESEARCH METHODS
Rana Ghonim, Amira F El-Yazbi, Heba Elmansi, Hadir M Maher, Fathalla Belal
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引用次数: 0

摘要

在这项工作中,我们开发了一种新的基于食物的可食用“废物”回收方法的传感技术。该策略基于微波热解自底向上技术对枣核(DK)和硫脲进行热解,形成基于碳点(CDs)的传感器探针,用于定量卡比多巴(CAR)和电子苯巴(ELT)。目的:利用区分开关荧光纳米传感器对两种常用药物CAR和ELT在纳米尺度上进行定量。材料和方法:采用多种光谱技术进行表征。本研究采用荧光猝灭法。研究了其他药物可能引入的干扰。样品制备的分析绿色度(AGREE prep)和复杂绿色分析程序指数(complex GAPI)度量工具被用于评估所开发方法的环境影响。结果:CAR和ELT对硫、氮枣核碳点(S, NDKCDs)均表现出静态猝灭的特性,在λex为330 nm和λem为410 nm范围内,分别在50.0 ~ 600.0 ng/mL和100.0 ~ 1000.0 ng/mL范围内,量子产率高达53%,回收率为98.5 ~ 102,相对标准偏差(RSD)低。合成的碳纳米点被用于定量CAR和ELT的纯形式、药物制剂和人血浆样品,具有出色的绿色指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Green Sensor Technology: Quantitation of Carbidopa and Eltrombopag Using Date Kernel-Derived Carbon Dots.

Introduction: In this work, we developed a novel sensing technique based on food in edible "waste" recycling approach. The eco-friendly and rapid strategy is based on microwave pyrolysis bottom-up technique for date kernels (DK) and thiourea, resulting in the formation of sensor probe based on carbon dots (CDs) for quantification of carbidopa (CAR) and eltrombopag (ELT).

Objectives: Discriminatory switch-off fluorescent nanosensors were utilized for the quantitation of two frequently administered drugs: CAR and ELT in nano dimension levels.

Material and methods: Versatile spectroscopic techniques were used for characterization. Spectrofluorimetric quenching approach is applied for this study. The interference likely to be introduced from other drugs was studied. The analytical greenness for sample preparation (AGREE prep) and complex green analytical procedure index (complex GAPI) metric tools were applied to evaluate the developed approach environmental impact.

Results: Both CAR and ELT exhibited static quenching to the sulfur and nitrogen date kernels carbon dots (S, NDKCDs) with high quantum yield of 53% with λex of 330 nm and λem at 410 nm over the ranges of 50.0-600.0 ng/mL and 100.0-1000.0 ng/mL, independently with high %Recovery from 98.5 to 102, low relative standard deviation (RSD) < 2%.

Conclusion: The developed method was validated in adherence to the ICH Q2(R1) guidelines. The synthesized carbon nanodots were exploited for the quantitation of each of CAR and ELT in their pure forms, pharmaceutical preparations, and human plasma samples with outstanding greenness metrices.

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来源期刊
Phytochemical Analysis
Phytochemical Analysis 生物-分析化学
CiteScore
6.00
自引率
6.10%
发文量
88
审稿时长
1.7 months
期刊介绍: Phytochemical Analysis is devoted to the publication of original articles concerning the development, improvement, validation and/or extension of application of analytical methodology in the plant sciences. The spectrum of coverage is broad, encompassing methods and techniques relevant to the detection (including bio-screening), extraction, separation, purification, identification and quantification of compounds in plant biochemistry, plant cellular and molecular biology, plant biotechnology, the food sciences, agriculture and horticulture. The Journal publishes papers describing significant novelty in the analysis of whole plants (including algae), plant cells, tissues and organs, plant-derived extracts and plant products (including those which have been partially or completely refined for use in the food, agrochemical, pharmaceutical and related industries). All forms of physical, chemical, biochemical, spectroscopic, radiometric, electrometric, chromatographic, metabolomic and chemometric investigations of plant products (monomeric species as well as polymeric molecules such as nucleic acids, proteins, lipids and carbohydrates) are included within the remit of the Journal. Papers dealing with novel methods relating to areas such as data handling/ data mining in plant sciences will also be welcomed.
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