State Key Laboratory for Quality Ensurance and Sustainable Use of Dao-di Herbs, National Resource Center for Chinese Materia Medica, China Academy of Chinese Medical Sciences, Beijing, 100700, China.
State Key Laboratory for Quality Ensurance and Sustainable Use of Dao-di Herbs, National Resource Center for Chinese Materia Medica, China Academy of Chinese Medical Sciences, Beijing, 100700, China.
Talanta. 2024 Mar 1;269:125402. doi: 10.1016/j.talanta.2023.125402. Epub 2023 Nov 11.
The accurate analysis of ultra-trace (e.g. <10 ng/mL) substances in complex matrices is a burdensome but vital problem in pharmaceutical analysis, with important implications for precise quality control of drugs, discovery of innovative medicines and elucidation of pharmacological mechanisms. Herein, an innovative constant-flow perfusion nano-electrospray ionization (PnESI) technique was developed firstly features significant quantitative advantages in high-sensitivity ambient MS analysis of complex matrix sample. More importantly, double-labeled addition enrichment quantitation strategies of gas-liquid microextraction (GLME) were proposed for the first time, allowing highly selective extraction and enrichment of specific target analytes in a green and ultra-efficient (>1000-fold) manner. Using complex processed Aconitum herbs as example, PnESI-MS directly enabled the qualitative and absolute quantitative analysis of the processed Aconitum extracts and characterized the target toxic diester alkaloids with high sensitivity, high stability, wide linearity range, and strong resistance to matrix interference. Further, GLME device was applied to obtain the highly specific enrichment of the target diester alkaloids more than 1000-fold, and accurate absolute quantitation of trace aconitine, mesaconitine, and hypaconitine in the extracts of Heishunpian, Zhichuanwu and Zhicaowu was accomplished (e.g., 0.098 pg/mL and 0.143 pg/mL), with the quantitation results well below the LODs of aconitines from any analytical instruments available. This study built a systematic strategy for accurate quantitation of ultra-trace substances in complex matrix sample and expected to provide a technological revolution in many fields of pharmaceutical research.
准确分析复杂基质中超痕量(例如 <10 ng/mL)物质是药物分析中一项艰巨但至关重要的任务,对于药物的精确质量控制、创新药物的发现和药理学机制的阐明具有重要意义。本文首次开发了一种创新的恒流灌注纳喷雾电离(PnESI)技术,具有在复杂基质样品的高灵敏度环境 MS 分析中显著的定量优势。更重要的是,首次提出了气液微萃取(GLME)的双标记加标富集定量策略,以绿色、超高效(>1000 倍)的方式实现特定目标分析物的高选择性提取和富集。以复杂炮制的乌头属植物为例,PnESI-MS 可直接对炮制乌头提取物进行定性和绝对定量分析,并以高灵敏度、高稳定性、宽线性范围和强抗基质干扰的方式对目标毒性二酯生物碱进行表征。此外,GLME 装置可用于对目标二酯生物碱进行 1000 倍以上的高特异性富集,并对黑顺片、制川乌和制草乌提取物中的微量乌头碱、次乌头碱和新乌头碱进行准确的绝对定量(例如,0.098 pg/mL 和 0.143 pg/mL),其定量结果远低于现有任何分析仪器对乌头类生物碱的检出限。本研究建立了一种用于复杂基质中超痕量物质准确定量的系统策略,有望为药物研究的许多领域带来技术革命。