利用绿色超声波辅助萃取技术,采用设计辅助分析质量的 RP-HPLC 法同时测定商用食品样品中的庞西欧 4R 和胭脂虫红素,实现生态环保

Atyurmila Chakraborty, Kavitha Jayaseelan
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引用次数: 0

摘要

背景:胭脂红 4R (E124) 和胭脂虫红 (E122) 是食品工业中经常使用的偶氮合成染料,因为它们具有美观的着色效果和广泛的消费者接受度。当务之急是优先采用对环境有利的技术来量化这些染料,因为过量食用这些染料会对健康造成严重危害:本研究的主要目的是建立一种反相高效液相色谱(RP-HPLC)方法,该方法可同时检测商业食品样品中的庞素 4R 和胭脂虫红,并采用超声辅助萃取(UAE)技术,实施绿色分析化学(GAC)和分析质量设计(AQbD):采用Agilent Eclipse Plus (C18, 250 × 4.6 mm i.d, 5 µm)进行有效分离,流动相为pH 5的乙醇和乙酸缓冲液,比例为60:40,流速为1 mL/min,检测波长为515 nm。方法优化的关键变量是乙醇和流速,采用中心复合设计(CCD)确定。为了遵循绿色化学的 12 项原则,用乙醇代替了有害溶剂,因为乙醇具有简单、快速和生态可持续性的特点。利用绿色分析程序指数(GAPI)、分析生态量表(AES)和分析绿色度量(AGREE)进行了绿色评估:庞西欧 4R 和胭脂虫红的保留时间分别为 2.276 分钟和 3.450 分钟。在各种市场销售的食品样品中,琼脂 4R 和胭脂虫红的回收率分别为 70- 102% 和 80-102%。根据国际协调会议 Q14 准则,该程序通过了验证:所设计的方法在指定工作点的线性、精密度、灵敏度和重现性方面均符合预定标准。GAPI、AES 和 AGREE 工具产生的结果最为理想:未来,用于评估各种食品着色剂的环境可持续溶剂型稳健 AQbD 方法可能会被采用并进行商业改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Eco-Friendly Simultaneous Estimation of Ponceau 4R and Carmoisine Employing an Analytical Quality by Design-Aided RP-HPLC Method in Commercial Food Samples Utilizing a Green Ultrasound-Assisted Extraction Technique.

Background: Ponceau 4R (E124) and carmoisine (CMS; E122) are frequently utilized azo synthetic dyes in the food industry owing to their aesthetically pleasing coloration and broad consumer acceptability. It is imperative to prioritize environmentally favorable technologies for quantifying these dyes, as excessive consumption of these poses significant health risks.

Objective: The primary objective of this research was to establish a reversed-phase (RP)-HPLC method that could simultaneously detect Ponceau 4R and CMS, implementing green analytical chemistry (GAC) and analytical quality by design (AQbD), using an ultrasound-assisted extraction (UAE) technique in commercial food samples.

Methods: An Agilent Eclipse Plus column (C18, 250 × 4.6 mm id, 5 µm) was utilized for effective separation with a mobile phase of ethanol-acetate buffer pH 5 (60:40, v/v), flow rate of 1 mL/min, and detection wavelength of 515 nm. Critical variables selected for method optimization were ethanol percentage and flow rate, determined using central composite design (CCD). In order to adhere to the 12 principles of green chemistry, hazardous solvents were substituted with ethanol, which is distinguished by its ease of use, effectiveness, and ecological sustainability. The greenness assessment was conducted utilizing the green analytical procedure index (GAPI), analytical eco-scale (AES), and analytical greenness metrics (AGREE).

Results: The respective retention times for Ponceau 4R and CMS were 2.276 and 3.450 min. The recovery rate of Ponceau 4R and CMS fluctuated between 70% and 102% and 80% and 102%, respectively, across various marketed food samples. The procedure passed validation in accordance with the International Conference on Harmonization Q14 guidelines.

Conclusion: The devised method demonstrates that the validation parameters like linearity, precision, sensitivity, and reproducibility are within the specified limits of ICH guidelines. The greenness assesment tools GAPI, AES, and AGREE produced the most favorable results.

Highlights: In future, environmentally sustainable, solvent-based, robust AQbD methodologies for assessing varieties of food colorants may be adopted and improved commercially.

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