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采用集成微流控探头的生物组织高通量纳喷雾解吸电离质谱成像。

High-Throughput Nano-DESI Mass Spectrometry Imaging of Biological Tissues Using an Integrated Microfluidic Probe.

机构信息

Department of Chemistry, Purdue University, West Lafayette, Indiana 47907, United States.

Division of Reproductive Sciences, Cincinnati Children's Hospital Medical Centre and Department of Pediatrics, University of Cincinnati College of Medicine, Cincinnati, Ohio 45229, United States.

出版信息

Anal Chem. 2022 Jul 12;94(27):9690-9696. doi: 10.1021/acs.analchem.2c01093. Epub 2022 Jun 30.

Abstract

Nanospray desorption electrospray mass spectrometry imaging (nano-DESI MSI) enables quantitative mapping of hundreds of molecules in biological samples with minimal sample pretreatment. We have recently developed an integrated microfluidic probe (iMFP) for nano-DESI MSI. Herein, we describe an improved design of the iMFP for the high-throughput imaging of tissue sections. We increased the dimensions of the primary and spray channels and optimized the spray voltage and solvent flow rate to obtain a stable operation of the iMFP at both low and high scan rates. We observe that the sensitivity, molecular coverage, and spatial resolution obtained using the iMFP do not change to a significant extent as the scan rate increases. Using a scan rate of 0.4 mm/s, we obtained high-quality images of mouse uterine tissue sections (scan area: 3.2 mm × 2.3 mm) in only 9.5 min and of mouse brain tissue (scan area: 7.0 mm × 5.4 mm) in 21.7 min, which corresponds to a 10-15-fold improvement in the experimental throughput. We have also developed a quantitative metric for evaluating the quality of ion images obtained at different scan rates. Using this metric, we demonstrate that the quality of nano-DESI MSI data does not degrade substantially with an increase in the scan rate. The ability to image biological tissues with high throughput using iMFP-based nano-DESI MSI will substantially speed up tissue mapping efforts.

摘要

纳米喷雾解吸电喷雾质谱成像(nano-DESI MSI)能够对生物样本中的数百种分子进行定量映射,而无需进行最小的样品预处理。我们最近开发了一种用于 nano-DESI MSI 的集成微流控探头(iMFP)。在此,我们描述了 iMFP 的改进设计,用于对组织切片进行高通量成像。我们增加了主通道和喷雾通道的尺寸,并优化了喷雾电压和溶剂流速,以在低和高扫描速率下都获得 iMFP 的稳定运行。我们观察到,使用 iMFP 获得的灵敏度、分子覆盖率和空间分辨率在扫描速率增加时不会有显著变化。使用 0.4mm/s 的扫描速率,我们仅用 9.5 分钟即可获得高质量的小鼠子宫组织切片(扫描面积:3.2mm×2.3mm)图像,用 21.7 分钟即可获得小鼠脑组织(扫描面积:7.0mm×5.4mm)图像,实验通量提高了 10-15 倍。我们还开发了一种定量指标,用于评估不同扫描速率下获得的离子图像的质量。使用该指标,我们证明随着扫描速率的增加,nano-DESI MSI 数据的质量不会大幅下降。使用基于 iMFP 的 nano-DESI MSI 进行高通量生物组织成像的能力将大大加快组织映射工作的速度。

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