Chemical and Materials Sciences Division, Pacific Northwest National Laboratory, Richland, Washington 99352, USA.
Anal Chem. 2012 Jan 3;84(1):141-8. doi: 10.1021/ac2021322. Epub 2011 Dec 1.
Ambient ionization imaging mass spectrometry is uniquely suited for detailed spatially resolved chemical characterization of biological samples in their native environment. However, the spatial resolution attainable using existing approaches is limited by the ion transfer efficiency from the ionization region into the mass spectrometer. Here, we present a first study of ambient imaging of biological samples using nanospray desorption ionization (nano-DESI). Nano-DESI is a new ambient pressure ionization technique that uses minute amounts of solvent confined between two capillaries comprising the nano-DESI probe and the solid analyte for controlled desorption of molecules present on the substrate followed by ionization through self-aspirating nanospray. We demonstrate highly sensitive spatially resolved analysis of tissue samples without sample preparation. Our first proof-of-principle experiments indicate the potential of nano-DESI for ambient imaging with a spatial resolution of better than 12 μm. The significant improvement of the spatial resolution offered by nano-DESI imaging combined with high detection efficiency will enable new imaging mass spectrometry applications in clinical diagnostics, drug discovery, molecular biology, and biochemistry.
环境解析成像质谱分析特别适合于对其天然环境中的生物样本进行详细的空间分辨化学特征分析。然而,现有方法所能达到的空间分辨率受到从离子化区域到质谱仪的离子转移效率的限制。在这里,我们首次研究了使用纳喷雾解吸电离(nano-DESI)的生物样本环境成像。nano-DESI 是一种新的常压离子化技术,它使用在包含 nano-DESI 探头和固体分析物的两个毛细管之间限制的少量溶剂,用于对衬底上存在的分子进行受控解吸,然后通过自吸纳米喷雾进行离子化。我们展示了无需样品制备即可进行高灵敏度的空间分辨分析。我们的第一个原理验证实验表明,nano-DESI 具有优于 12μm 的空间分辨率的环境成像的潜力。nano-DESI 成像提供的空间分辨率的显著提高与高检测效率相结合,将使临床诊断、药物发现、分子生物学和生物化学领域的新成像质谱分析应用成为可能。