Shepard Hawkins S, Gottschalk Robert L G, May Jody C, McLean John A
Department of Chemistry, Center for Innovative Technology, Vanderbilt University, Nashville, Tennessee 37235, United States.
J Am Soc Mass Spectrom. 2025 Sep 3;36(9):1995-1999. doi: 10.1021/jasms.5c00111. Epub 2025 Aug 22.
Ambient ionization techniques enable mass spectrometry (MS) to expand into broader experimental contexts, although it is increasingly clear that results are influenced by the environmental conditions at the site of sampling. Desorption electrospray ionization (DESI), in particular, is affected by variations in relative humidity (RH) levels. Here we describe the design, development, and construction of an environmental control chassis that can actively modulate RH within ± 3% of user-defined set points across a broad humidity range (15%-70% RH). Preliminary characterization demonstrated differential analyte responses across a range of set points, with observed enhancement of leucine-enkephalin, sulfadimethoxine (negative mode), and maltose (positive mode) in response to increased humidity. The measurable differences in analyte signals across discrete humidity set points underscore the importance of environmental control in ambient ionization strategies. The humidity control system outlined here can be translated to other DESI platforms, with construction information provided herein.
常压电离技术使质谱(MS)能够扩展到更广泛的实验环境中,尽管越来越明显的是,结果会受到采样地点环境条件的影响。特别是解吸电喷雾电离(DESI),会受到相对湿度(RH)水平变化的影响。在此,我们描述了一种环境控制机箱的设计、开发和构建,该机箱能够在很宽的湿度范围(15% - 70%RH)内,将RH主动调节到用户定义设定点的±3%范围内。初步表征表明,在一系列设定点上分析物的响应存在差异,观察到随着湿度增加,亮氨酸脑啡肽、磺胺二甲氧嘧啶(负离子模式)和麦芽糖(正离子模式)的信号增强。在离散湿度设定点上分析物信号的可测量差异强调了环境控制在常压电离策略中的重要性。本文概述的湿度控制系统可以应用于其他DESI平台,并在此提供了构建信息。