Application of Nanofiber-packed SPE for Determination of Urinary 1-Hydroxypyrene Level Using HPLC.

Analytical Chemistry Insights Pub Date : 2014-04-22 eCollection Date: 2014-01-01 DOI:10.4137/ACI.S13560
Okechukwu Clinton Ifegwu, Chimezie Anyakora, Samuel Chigome, Nelson Torto
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引用次数: 18

Abstract

It is always desirable to achieve maximum sample clean-up, extraction, and pre-concentration with the minimum possible organic solvent. The miniaturization of sample preparation devices was successfully demonstrated by packing 10 mg of 11 electrospun polymer nanofibers into pipette tip micro column and mini disc cartridges for efficient pre-concentration of 1-hydroxypyrene in urine samples. 1-hydroxypyrene is an extensively studied biomarker of the largest class of chemical carcinogens. Excretory 1-hydroxypyrene was monitored with HPLC/fluorescence detector. Important parameters influencing the percentage recovery such as fiber diameter, fiber packing amount, eluent, fiber packing format, eluent volume, surface area, porosity, and breakthrough parameters were thoroughly studied and optimized. Under optimized condition, there was a near perfect linearity of response in the range of 1-1000 μg/L with a coefficient of determination (r (2)) between 0.9992 and 0.9999 and precision (% RSD) ≤7.64% (n = 6) for all the analysis (10, 25, and 50 μg/L). The Limit of detection (LOD) was between 0.022 and 0.15 μg/L. When compared to the batch studies, both disc packed nanofiber sorbents and pipette tip packed sorbents exhibited evident dominance based on their efficiencies. The experimental results showed comparable absolute recoveries for the mini disc packed fibers (84% for Nylon 6) and micro columns (80% for Nylon 6), although the disc displayed slightly higher recoveries possibly due to the exposure of the analyte to a larger reacting surface. The results also showed highly comparative extraction efficiencies between the nanofibers and conventional C-18 SPE sorbent. Nevertheless, miniaturized SPE devices simplified sample preparation, reducing back pressure, time of the analysis with acceptable reliability, selectivity, detection levels, and environmental friendliness, hence promoting green chemistry.

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纳米纤维固相萃取法测定尿中1-羟基芘含量。
总是希望用尽可能少的有机溶剂实现最大限度的样品清理、提取和预浓缩。通过将10 mg的11种电纺聚合物纳米纤维装入移液管尖端的微柱和微型圆盘筒,成功地证明了样品制备装置的小型化,从而有效地预浓缩了尿样中的1-羟基芘。1-羟基芘是被广泛研究的一类最大的化学致癌物的生物标志物。用高效液相色谱/荧光检测器监测1-羟基芘的排泄量。对影响回收率的纤维直径、纤维填充量、洗脱液、纤维填充形式、洗脱液体积、比表面积、孔隙度和突破参数等重要参数进行了深入研究和优化。在优化条件下,在1 ~ 1000 μg/L范围内线性接近完美,决定系数(r(2))在0.9992 ~ 0.9999之间,精密度(% RSD)≤7.64% (n = 6)。检出限为0.022 ~ 0.15 μg/L。与批量研究相比,圆盘填充纳米纤维吸附剂和移液管尖端填充吸附剂在效率上都表现出明显的优势。实验结果显示,微型圆盘填充纤维(尼龙6为84%)和微型柱(尼龙6为80%)的绝对回收率相当,尽管圆盘显示的回收率略高,可能是由于分析物暴露于更大的反应表面。结果还表明,纳米纤维与传统的C-18固相萃取吸附剂具有较高的萃取效率。然而,小型化的SPE装置简化了样品制备,降低了背压和分析时间,具有可接受的可靠性、选择性、检测水平和环境友好性,从而促进了绿色化学。
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