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通过简单的多组分反应制备用于在线提取和 LC-MS 分析血清中β-雌二醇的整体柱。

Preparation of Monolith for Online Extraction and LC-MS Analysis of β-Estradiol in Serum Via a Simple Multicomponent Reaction.

机构信息

Department of Chemistry, Università di Roma La Sapienza, Piazzale Aldo Moro 5, 00185 Rome, Italy.

出版信息

Anal Chem. 2024 Mar 19;96(11):4639-4646. doi: 10.1021/acs.analchem.3c05706. Epub 2024 Mar 5.

Abstract

Multicomponent reactions offer efficient and environmentally friendly strategies for preparing monoliths suitable for applications in analytical chemistry. In the described study, a multicomponent reaction was utilized for the one-pot miniaturized preparation of a poly(propargyl amine) polymer inside commercial silica-lined PEEK tubing. The reaction involved only small amounts of reagents and was characterized by atom economy. The resulting monolithic column was incorporated into an autosampler system for the online extraction and cleanup of β-estradiol from human serum. Sample pretreatment was simplified to a simple dilution with methanol and centrifugation to remove proteins. The resulting platform included LC-MS analysis in multiple reaction monitoring for quantitative analysis of β-estradiol. The method was validated in serum, demonstrating practical applicability for the monitoring of fertile women. Recoveries were above 94%, and LOD and LOQ values at 0.008 and 0.18 ng mL, respectively. The developed platform proved to be competitive with previous methods for solid-phase microextraction of β-estradiol in serum, with comparable recovery and sensitivity but with the advantage of nearly complete automation. The environmental impact of the process was evaluated as acceptable due to the miniaturization of the monolith synthesis and the automation of extraction. The drawback associated with the LC-MS technique can be reduced by the inclusion of additional analytes in a single investigation. The work demonstrates that multicomponent reactions are versatile, economical, and possibly a green methodology for producing reversed-phase and mixed-mode sorbents, enabling miniaturization of the entire analytical procedure from the preparation of extraction sorbents to analysis.

摘要

多组分反应为制备适用于分析化学应用的整体式材料提供了高效、环保的策略。在描述的研究中,利用多组分反应在商业的聚醚醚酮内衬的硅胶管内一锅法制备聚(丙炔胺)聚合物的微型整体柱。该反应仅使用少量试剂,具有原子经济性。所得整体柱被纳入自动进样系统,用于从人血清中在线提取和净化β-雌二醇。样品预处理简化为简单的甲醇稀释和离心去除蛋白质。该平台包括 LC-MS 分析,采用多重反应监测对 β-雌二醇进行定量分析。该方法在血清中进行了验证,证明了其在监测生育期妇女方面的实际应用。回收率高于 94%,LOD 和 LOQ 值分别为 0.008 和 0.18ngmL。与以前用于血清中β-雌二醇固相微萃取的方法相比,所开发的平台具有竞争力,具有可比的回收率和灵敏度,但具有几乎完全自动化的优势。由于整体柱合成的微型化和提取的自动化,该过程的环境影响被评估为可接受。与 LC-MS 技术相关的缺点可以通过在单次研究中包含其他分析物来减少。该工作表明,多组分反应是多功能、经济且可能是绿色的方法,用于制备反相和混合模式的吸附剂,能够从小型化整个分析过程,从萃取吸附剂的制备到分析。

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