尼古丁袋和其他口服尼古丁递送产品中尼古丁Polacrilex的鉴定与定量

S. Moldoveanu
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引用次数: 0

摘要

尼古丁polacrilex (CAS-No)96055-45-7)可在尼古丁袋和其他口服尼古丁递送产品(如含片、片剂和口香糖)中用作尼古丁源。这种化合物是尼古丁的盐和Amberlite IRP64,一种甲基丙烯酸和二乙烯基苯的共聚物。本研究描述了一个独特的程序,以确定复方尼古丁polacrilex在口服尼古丁输送产品的存在,并评估其水平。在口服尼古丁递送产品中,polacrilex尼古丁与其他成分混合使用,如微晶纤维素(MCC)、麦芽糖醇、甜味剂、香料、盐(如Na2CO3、NaHCO3)、水等。这些成分使得用红外或拉曼光谱技术分析复方尼古丁polacrilex变得困难。此外,由于尼古丁polacrilex不溶于普通溶剂,使用溶液进行分析是不可能的。该研究还试图检测产品是否只含有尼古丁polacrilex或是否含有其他形式的尼古丁(例如尼古丁或酒石酸尼古丁)。采用热解-气相色谱/质谱(Py-GC/MS)分析,通过测定Amberlite IRP64中二乙烯基苯(DVB)部分的热解产物,对尼古丁polacrilex进行检测和定量。该方法的检测结果非常可靠,但由于热解过程的典型变异性,定量结果存在一定的变异性。(普通发布版。钻头扭矩。尼古丁法规。32 (2023)43-49]
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Identification and Quantitation of Nicotine Polacrilex in Nicotine Pouches and Other Oral Nicotine Delivery Products
SUMMARY Nicotine polacrilex (CAS-No. 96055-45-7) can be used as the source of nicotine in nicotine pouches and other oral nicotine delivery products such as lozenges, tablets, and gums. The compound is the salt of nicotine with Amberlite IRP64, a copolymer of methacrylic acid and divinylbenzene. Present study describes a unique procedure to identify the presence of the compound nicotine polacrilex in oral nicotine delivery products and to evaluate its level. In oral nicotine delivery products, nicotine polacrilex is used in a mixture with other ingredients such as microcrystalline cellulose (MCC), maltitol, sweeteners, flavors, salts (such as Na2CO3, NaHCO3), water, etc. These ingredients make the analysis of the compound nicotine polacrilex by spectroscopic techniques such as IR or Raman difficult. Also, since nicotine polacrilex is insoluble in common solvents, the analysis using solutions is not possible. The study is also attempting to detect if the product contains only nicotine polacrilex or if it has additional nicotine in a different form (e.g., nicotine or nicotine tartrate). The analysis uses pyrolysis-GC/MS (Py-GC/MS) and the detection and quantitation of nicotine polacrilex is based on measuring the pyrolysis products of divinylbenzene (DVB) moiety from the Amberlite IRP64. The detection was proven very reliable by this procedure, while the quantitation showed some variability caused by the typical variability in the pyrolysis process. [Contrib. Tob. Nicotine Res. 32 (2023) 43–49]
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