质谱成像
化学
质谱法
超短脉冲
飞秒
分子成像
激光器
显微镜
化学成像
激光烧蚀
显微镜
马尔迪成像
纳米尺度
分析化学(期刊)
电感耦合等离子体质谱法
胶体金
二次离子质谱法
纳米技术
等离子体子
离子
图像分辨率
纳米颗粒
分子
作者
Yixin Leng,Yuyang Zhu,Quanfeng Xu,Yingying Chen,Yizhu Xu,T. Wang,Siyuan Ma,Zhibin Yin,Zhouyi Xu,Wei Hang
摘要
Mass spectrometry imaging (MSI) enables the visualization of numerous molecular distributions in tissues and cells, yet it remains highly challenging in balancing spatial resolution, sensitivity, and throughput. Here we report the development of a femtosecond laser desorption laser postionization mass spectrometry microscope (fs-LDPI-MSM) for ultrafast molecular imaging. Unlike conventional microprobe-mode MSI by bypassing time-consuming pixel-by-pixel interrogation, this laser-based MSM system enables imaging all detectable species within merely seconds. Using this platform, we achieve 780 nm imaging resolution, 1.5 pm ablation depth, and amol-level detection limits. Exploiting enhanced ion yields from laser postionization and plasmonic gold nanoparticles, we have visualized the spatial locations of various lipids in mouse and bee brains, and snapshotted the nanoscale spatial distributions of targeted drugs and endogenous compounds within single cells under perturbed microenvironments. The fs-LDPI-MSM shall be a valuable tool for ultrafast molecular imaging, revolutionizing high-throughput MSI for cell biology and biomedical applications.
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