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High mass accuracy and high mass resolving power FT-ICR secondary ion mass spectrometry for biological tissue imaging

机译:用于生物组织成像的高质量精度和高质量分辨力FT-ICR二次离子质谱

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摘要

Biological tissue imaging by secondary ion mass spectrometry has seen rapid development with the commercial availability of polyatomic primary ion sources. Endogenous lipids and other small bio-molecules can now be routinely mapped on the sub-micrometer scale. Such experiments are typically performed on time-of-flight mass spectrometers for high sensitivity and high repetition rate imaging. However, such mass analyzers lack the mass resolving power to ensure separation of isobaric ions and the mass accuracy for elemental formula assignment based on exact mass measurement. We have recently reported a secondary ion mass spectrometer with the combination of a C_(60) primary ion gun with a Fourier transform ion cyclotron resonance mass spectrometer (FT-ICR MS) for high mass resolving power, high mass measurement accuracy, and tandem mass spectrometry capabilities. In this work, high specificity and high sensitivity secondary ion FT-ICR MS was applied to chemical imaging of biological tissue. An entire rat brain tissue was measured with 150 μm spatial resolution (75 μm primary ion spot size) with mass resolving power (m/Δm _(50%)) of 67,500 (at m/z 750) and root-mean-square measurement accuracy less than two parts-per-million for intact phospholipids, small molecules and fragments. For the first time, ultra-high mass resolving power SIMS has been demonstrated, with m/Δm _(50%) > 3,000,000. Higher spatial resolution capabilities of the platform were tested at a spatial resolution of 20 μm. The results represent order of magnitude improvements in mass resolving power and mass measurement accuracy for SIMS imaging and the promise of the platform for ultra-high mass resolving power and high spatial resolution imaging. [Figure not available: see fulltext.]
机译:随着多原子一级离子源的商业可得性,通过二次离子质谱的生物组织成像已得到快速发展。现在可以将内源性脂质和其他小生物分子常规地绘制在亚微米尺度上。此类实验通常在飞行时间质谱仪上进行,以实现高灵敏度和高重复率成像。然而,这样的质量分析器缺乏质量分辨能力以确保等压离子的分离和基于精确质量测量的元素配方分配的质量精度。我们最近报告了一种二次离子质谱仪,该质谱仪结合了C_(60)一级离子枪和傅立叶变换离子回旋共振质谱仪(FT-ICR MS),可实现高质量的分辨能力,高质量的测量精度和串联质谱光谱功能。在这项工作中,高特异性和高灵敏度的次级离子FT-ICR MS被应用于生物组织的化学成像。以150μm的空间分辨率(75μm的初级离子点尺寸)测量整个大鼠脑组织,其质量分辨力(m /Δm_(50%))为67,500(在m / z 750时),并且均方根测量对于完整的磷脂,小分子和碎片,其准确度不到百万分之二。首次展示了超高质量分辨力SIMS,m /Δm_(50%)> 3,000,000。在20μm的空间分辨率下测试了平台的更高空间分辨率功能。结果代表了SIMS成像的质量分辨能力和质量测量精度的数量级改善,以及超高质量分辨能力和高空间分辨率成像平台的前景。 [图不可用:请参见全文。]

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