代谢组学
质谱成像
马尔迪成像
化学
生物分子
质谱法
印记(心理学)
分子印迹
磷酸胆碱
共焦
膜
生物物理学
材料科学
解吸
色谱法
吸附
基质辅助激光解吸/电离
生物化学
生物
磷脂
光学
催化作用
有机化学
物理
磷脂酰胆碱
选择性
基因
作者
Xingyue Liu,Liye Tao,Xinrong Jiang,Xuetong Qu,Wei Duan,Jiekai Yu,Xiao Liang,Jianmin Wu
标识
DOI:10.1002/smtd.202301644
摘要
Abstract Surface‐assisted laser desorption/ionization (SALDI) mass spectrometry imaging (MSI) holds great value in spatial metabolomics and tumor diagnosis. Tissue imprinting on the SALDI target can avoid laser‐induced tissue ablation and simplifies the sample preparation. However, the tissue imprinting process always causes lateral diffusion of biomolecules, thereby losing the fidelity of metabolite distribution on tissue. Herein, a membrane‐mediated imprinting mass spectrometry imaging (MMI‐MSI) strategy is proposed using isoporous nuclepore track‐etched membrane as a mediating imprinting layer to selectively transport metabolites through uniform and vertical pores onto silicon nanowires (SiNWs) array. Compared with conventional direct imprinting technique, MMI‐MSI can not only exclude the adsorption of large biomolecules but also avoid the lateral diffusion of metabolites. The whole time for MMI‐based sample preparation can be reduced to 2 min, and the lipid peak number can increase from 46 to 113 in kidney tissue detection. Meanwhile, higher resolution of MSI can be achieved due to the confinement effect of the pore channel in the diffusion of metabolites. Based on MMI‐MSI, the tumor margins of liver cancer can be clearly discriminated and their different subtypes can be precisely classified. This work demonstrates MMI‐MSI is a rapid, highly sensitive, robust and high‐resolution technique for spatially‐resolved metabolomics and pathological diagnosis.
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