NiCE-MSI, National Physical Laboratory, Hampton Road, Teddington, Middlesex TW11 0LW, U.K.
Biodiscovery Institute and School of Life Sciences, The University of Nottingham, University Park, Nottingham NG7 2RD, U.K.
Anal Chem. 2020 Jul 7;92(13):9008-9015. doi: 10.1021/acs.analchem.0c01125. Epub 2020 Jun 10.
Secondary ion mass spectrometry (SIMS) is gaining popularity for molecular imaging in the life sciences because it is label-free and allows imaging in two and three dimensions. The recent introduction of the OrbiSIMS has significantly improved the utility for biological imaging through combining subcellular spatial resolution with high-performance Orbitrap mass spectrometry. SIMS instruments operate in high-vacuum, and samples are typically analyzed in a freeze-dried state. Consequently, the molecular and structural information may not be well-preserved. We report a method for molecular imaging of biological materials, preserved in a native state, by using an OrbiSIMS instrument equipped with cryogenic sample handling and a high-pressure freezing protocol compatible with mass spectrometry. The performance is demonstrated by imaging a challenging sample (>90% water) of a mature biofilm in its native state. The 3D distribution of quorum sensing signaling molecules, nucleobases, and bacterial membrane molecules is revealed with high spatial-resolution and high mass-resolution. We discover that analysis in the frozen-hydrated state yields a 10 000-fold increase in signal intensity for polar molecules such as amino acids, which has important implications for SIMS imaging of metabolites and pharmaceuticals.
二次离子质谱(SIMS)因其无标记且可进行二维和三维成像而在生命科学领域的分子成像中越来越受欢迎。最近推出的 OrbiSIMS 通过将亚细胞空间分辨率与高性能轨道阱质谱相结合,极大地提高了生物成像的实用性。SIMS 仪器在高真空下运行,样品通常在冻干状态下进行分析。因此,分子和结构信息可能无法得到很好的保存。我们报告了一种使用配备低温样品处理和与质谱兼容的高压冷冻方案的 OrbiSIMS 仪器对生物材料进行分子成像的方法,这些生物材料以自然状态保存。通过对其在自然状态下成熟生物膜 (>90%水) 的挑战性样品进行成像,证明了该方法的性能。我们揭示了群体感应信号分子、核苷酸碱基和细菌膜分子的 3D 分布,具有高空间分辨率和高质量分辨率。我们发现,在冷冻水合状态下分析极性分子(如氨基酸)的信号强度增加了 10000 倍,这对 SIMS 成像代谢物和药物具有重要意义。