Future Industries Institute, University of South Australia , University Boulevard, Mawson Lakes, Adelaide, 5095 South Australia, Australia.
ARC Centre of Excellence in Convergent Bio-Nano Science and Technology, Future Industries Institute, University of South Australia , GPO Box 2471, Adelaide, South Australia 5001, Australia.
ACS Appl Mater Interfaces. 2017 Feb 15;9(6):5092-5099. doi: 10.1021/acsami.6b14362. Epub 2017 Feb 6.
Surface-assisted laser desorption/ionization mass spectrometry (SALDI-MS) is a high-throughput analytical technique ideally suited for small-molecule detection from different bodily fluids (e.g., saliva, urine, and blood plasma). Many SALDI-MS substrates require complex fabrication processes and further surface modifications. Furthermore, some substrates show instability upon exposure to ambient conditions and need to be kept under special inert conditions. We have successfully optimized mesoporous germanium (meso-pGe) using bipolar electrochemical etching and efficiently applied meso-pGe as a SALDI-MS substrate for the detection of illicit drugs such as in the context of workplace, roadside, and antiaddictive drug compliance. Argon plasma treatment improved the meso-pGe efficiency as a SALDI-MS substrate and eliminated the need for surface functionalization. The resulting substrate showed a precise surface geometry tuning by altering the etching parameters, and an outstanding performance for illicit drug detection with a limit of detection in Milli-Q water of 1.7 ng/mL and in spiked saliva as low as 5.3 ng/mL for cocaine. The meso-pGe substrate had a demonstrated stability over 56 days stored in ambient conditions. This proof-of-principle study demonstrates that meso-pGe can be reproducibly fabricated and applied as an analytical SALDI-MS substrate which opens the door for further analytical and forensic high-throughput applications.
表面辅助激光解吸/电离质谱(SALDI-MS)是一种高通量分析技术,非常适合从小分子在不同体液(例如唾液、尿液和血浆)中的检测。许多 SALDI-MS 基质需要复杂的制造工艺和进一步的表面修饰。此外,一些基质在暴露于环境条件下表现出不稳定性,需要在特殊惰性条件下保存。我们已经成功地使用双极电化学蚀刻对介孔锗(meso-pGe)进行了优化,并有效地将介孔 pGe 用作 SALDI-MS 基质,用于检测非法药物,例如在工作场所、路边和戒毒药物合规性方面。氩等离子体处理提高了作为 SALDI-MS 基质的介孔 pGe 的效率,并消除了对表面功能化的需求。通过改变蚀刻参数,可以精确调整所得基质的表面几何形状,并且在毫升级水中检测可卡因的检测限低至 1.7 ng/mL,在加标唾液中的检测限低至 5.3 ng/mL,表现出出色的非法药物检测性能。介孔 pGe 基质在环境条件下储存超过 56 天仍具有稳定性。这项原理验证研究表明,介孔 pGe 可以可重复地制造并用作分析 SALDI-MS 基质,为进一步的分析和法医高通量应用开辟了道路。