Development of a specific highly sensitive method for the determination of diclofenac sodium in atmospheric air taking into account the characteristics of microconcentrations of the active substance

Ya.Yu. Nikolaieva, M. Levin
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Abstract

Objective: to develop a specific, highly sensitive method for determining the concentration of sodium diclofenac in atmospheric air, taking into account the peculiarities of microconcentrations of the active substance. Materials and methods: Air sampling was carried out using a TYPHOON-S4 electric aspirator for 30 minutes at a speed of 20 l/min. The test to determine the concentration of sodium diclofenac in air was carried out by concentrating the analytical sample (aerosol of sodium diclofenac in water) by the method of solid-phase extraction, using Oasis MCX 6cc (150 mg) LP Extraction Cartridges, after which desorption was carried out with solvent - methanol. The obtained samples were analyzed by the method of high-performance liquid chromatography using a Dionex Ultimate 3000 chromatograph with a diode-matrix detector. The sensitivity of the method reaches ng/ml. It is shown that the concentration of the substance determined in the air is within (2-200 μg/m3). The results: As part of the work, a specific, highly sensitive method for determining the concentration of sodium diclofenac in the air was developed and testing was carried out by determining the concentration of sodium diclofenac in the air of the working area of the pharmaceutical enterprise «Lubnifarm» during certain analytical operations (pouring, weighing the substance, crushing tablets containing the active pharmaceutical ingredient under analysis, homogenization). The linear dependence of the diclofenac sodium peak area on the concentration of the substance in the solution (0.025-10 μg/ml) has been proven. The analysis showed that the volatile microparticles of the diclofenac sodium substance are exposed to air deposition, and as a result, a certain amount of this API penetrates into the analyzed samples of other drugs nearby. This fact can lead to obtaining unreliable results during the control of the quality and safety of medicinal products, which can have negative consequences for preserving the health of the population when using medicinal products of inadequate quality. Conclusions: Based on the results of the research, it was established that the developed technique is highly sensitive and will allow determination of nano- and micro-concentrations of sodium diclofenac in atmospheric air.
考虑到活性物质微量浓度的特点,开发一种测定大气中双氯芬酸钠的高灵敏度方法
目的:考虑到活性物质微量浓度的特点,建立一种特异的、高灵敏度的测定大气中双氯芬酸钠浓度的方法。材料与方法:空气采样采用TYPHOON-S4型电动吸入器,采样时间为30分钟,采样速度为20 l/min。测定空气中双氯芬酸钠的浓度,采用固相萃取法,使用Oasis MCX 6cc (150 mg) LP萃取盒,对分析样品(双氯芬酸钠气溶胶)进行浓缩,然后用溶剂甲醇解吸。所得样品采用高效液相色谱法进行分析,采用Dionex Ultimate 3000色谱仪和二极管矩阵检测器。方法灵敏度可达ng/ml。结果表明,该物质在空气中测定的浓度在(2 ~ 200 μg/m3)以内。结果:作为工作的一部分,开发了一种特定的、高灵敏度的方法来测定空气中双氯芬酸钠的浓度,并通过测定制药企业Lubnifarm工作区域空气中双氯芬酸钠的浓度进行了测试在某些分析操作(倾倒、称量物质、粉碎含有待分析活性药物成分的片剂、均质化)中。双氯芬酸钠峰面积与溶液中物质浓度(0.025 ~ 10 μg/ml)呈线性关系。分析表明,双氯芬酸钠物质的挥发性微粒暴露于空气沉积中,从而使一定量的该原料药渗透到附近的其他药物的分析样品中。这一事实可能导致在控制药品质量和安全期间获得不可靠的结果,这可能对使用质量不合格的药品时保护人口健康产生负面影响。结论:根据研究结果,确定所开发的技术具有高灵敏度,可用于测定大气中双氯芬酸钠的纳米和微量浓度。
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