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A Standardized Approach to Quantitative Analysis of Nicotine in e-Liquids Based on Peak Purity Criteria Using High-Performance Liquid Chromatography

机译:基于峰纯度标准的高效液相色谱法定量分析电子液体中尼古丁的标准化方法

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The use of electronic cigarettes (e-cigarettes) is a growing trend in population. E-cigarettes are evolving at a rapid rate with variety of battery powered devices and combustible nicotine refills such as e-liquids. In contrast to conventional cigarettes which are studied well for their toxicity and health effects, long-term clinical data on e-cigarettes are not available yet. Therefore, safety of e-cigarettes is still a major concern. Although the Food and Drug Administration (FDA) has recently started regulating e-cigarette products, no limits on nicotine and other ingredients in such products have been proposed. Considering the regulatory requirements, it is critical that reliable and standardized analytical methods for analyzing nicotine and other ingredients in e-cigarette products such as e-liquids are available. Here, we are reporting a fully validated high-performance liquid chromatography (HPLC) method based on nicotine peak purity for accurately quantifying nicotine in various e-liquids. The method has been validated as per ICH Q2(R1) and USP <1225> guidelines. The method is specific, precise, accurate, and linear to analyze nicotine in e-liquids with 1 to >50 mg/mL of nicotine. Additionally, the method has been proven robust and flexible for parameters such as change in flow rate, column oven temperature, and organic phase composition, which proves applicability of the method over wide variety of e-liquids in market.
机译:电子烟(电子烟)的使用是人口的增长趋势。电子烟正以各种电池供电的设备和易燃的尼古丁笔芯(例如电子液体)快速发展。与对其毒性和健康影响进行了深入研究的常规卷烟相比,尚无关于电子烟的长期临床数据。因此,电子烟的安全性仍然是主要关注的问题。尽管美国食品药品监督管理局(FDA)最近已开始监管电子烟产品,但尚未提出对此类产品中尼古丁和其他成分的限制。考虑到法规要求,至关重要的是,要有可靠,标准化的分析方法来分析电子烟产品(例如电子烟油)中的尼古丁和其他成分。在这里,我们正在报告一种基于尼古丁峰纯度的经过充分验证的高效液相色谱(HPLC)方法,用于准确定量各种电子液体中的尼古丁。该方法已按照ICH Q2(R1)和USP <1225>指南进行了验证。该方法具有特异性,精确,准确和线性的特点,可分析含1至> 50μmg/ mL尼古丁的电子液体中的尼古丁。另外,已经证明该方法对于诸如流速,柱箱温度和有机相组成的变化的参数是鲁棒的和灵活的,这证明了该方法在市场上各种电子液体中的适用性。

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