Department of Chemistry, Illinois State University, Normal, Illinois 61790, United States.
Department of Management and Quantitative Methods, Illinois State University, Normal, Illinois 61790, United States.
Anal Chem. 2020 May 5;92(9):6676-6683. doi: 10.1021/acs.analchem.0c00562. Epub 2020 Apr 16.
Forensic laboratory backlogs are replete with suspected drug samples. Shifting analysis toward the point of seizure would save significant time and public funds. Moreover, a two-tiered identification strategy for controlled substance testing that relies on two independent, discerning methods could entirely circumvent the need for forensic laboratory testing. To this end, we coupled Raman spectroscopy and paper spray ionization mass spectrometry (PSI-MS) on a single instrumental platform. Both methods are capable of ambient analysis with fieldable instruments, yet Raman is often limited to bulk analysis. Critical to this work is the development of a gold nanoparticle (AuNP)-embedded paper swab to extend the capability of Raman spectroscopy to trace evidence via surface-enhanced Raman scattering (SERS). Plasmonic papers are characterized with respect to SERS signals and compatibility with PSI-MS analysis. Proof-of-principle is established with the identification of five representative drugs, and detection limits on the scale of 1-100 ng are achieved for both PSI-MS and SERS. The integrated SERS-PSI-MS system achieved 99.8% accurate chemical identification in a blind study consisting of 500 samples. Additionally, we demonstrate facile discrimination of several JWH-018 isomers via SERS even when MS and MS spectra are indistinguishable. Successful coupling of SERS and PSI-MS to enable on-site chemical analysis by two independent methods can potentially lead to a desirable paradigm shift in the handling of drug evidence.
法医实验室积压了大量疑似毒品样本。将分析工作转移到缴获点可以节省大量时间和公共资金。此外,对于受控物质测试,可以采用双层识别策略,依赖两种独立的、有辨别力的方法,可以完全避免法医实验室测试的需要。为此,我们在单个仪器平台上结合了拉曼光谱和纸喷雾电离质谱(PSI-MS)。这两种方法都可以使用现场仪器进行环境分析,但拉曼光谱通常仅限于批量分析。这项工作的关键是开发一种金纳米粒子(AuNP)嵌入的纸拭子,通过表面增强拉曼散射(SERS)将拉曼光谱的能力扩展到痕量证据。对等离子体纸进行了 SERS 信号和与 PSI-MS 分析兼容性的特性描述。通过鉴定五种代表性药物,证明了这一原理,PSI-MS 和 SERS 的检测限达到 1-100ng 数量级。在一个由 500 个样本组成的盲研究中,集成的 SERS-PSI-MS 系统实现了 99.8%的准确化学识别。此外,我们通过 SERS 甚至在 MS 和 MS 谱无法区分的情况下,成功地对几种 JWH-018 异构体进行了简单的区分。成功地将 SERS 和 PSI-MS 结合起来,通过两种独立的方法实现现场化学分析,有可能会给毒品证据的处理带来理想的范式转变。