Alhmoud Hashim Z, Guinan Taryn M, Elnathan Roey, Kobus Hilton, Voelcker Nicolas H
Mawson Institute, University of South Australia, Mawson Lakes, SA 5095, Australia.
Analyst. 2014 Nov 21;139(22):5999-6009. doi: 10.1039/c4an01391c.
Surface-assisted laser desorption/ionization mass spectrometry (SALDI-MS) is ideally suited for the high-throughput analysis of small molecules in bodily fluids (e.g. saliva, urine, and blood plasma). A key application for this technique is the testing of drug consumption in the context of workplace, roadside, athlete sports and anti-addictive drug compliance. Here, we show that vertically-aligned ordered silicon nanopillar (SiNP) arrays fabricated using nanosphere lithography followed by metal-assisted chemical etching (MACE) are suitable substrates for the SALDI-MS detection of methadone and small peptides. Porosity, length and diameter are fabrication parameters that we have explored here in order to optimize analytical performance. We demonstrate the quantitative analysis of methadone in MilliQ water down to 32 ng mL(-1). Finally, the capability of SiNP arrays to facilitate the detection of methadone in clinical samples is also demonstrated.
表面辅助激光解吸/电离质谱(SALDI-MS)非常适合对体液(如唾液、尿液和血浆)中的小分子进行高通量分析。该技术的一个关键应用是在工作场所、路边、运动员运动和抗成瘾药物合规性等背景下检测药物使用情况。在此,我们表明,使用纳米球光刻技术随后进行金属辅助化学蚀刻(MACE)制备的垂直排列有序硅纳米柱(SiNP)阵列是用于SALDI-MS检测美沙酮和小肽的合适基质。孔隙率、长度和直径是我们在此探索的制备参数,以优化分析性能。我们展示了在超纯水中美沙酮低至32 ng mL⁻¹的定量分析。最后,还展示了SiNP阵列促进临床样品中美沙酮检测的能力。