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Single-cell lipidomics enabled by dual-polarity ionization and ion mobility-mass spectrometry imaging.


ABSTRACT: Single-cell (SC) analysis provides unique insight into individual cell dynamics and cell-to-cell heterogeneity. Here, we utilize trapped ion mobility separation coupled with dual-polarity ionization mass spectrometry imaging (MSI) to enable high-throughput in situ profiling of the SC lipidome. Multimodal SC imaging, in which dual-polarity-mode MSI is used to perform serial data acquisition runs on individual cells, significantly enhanced SC lipidome coverage. High-spatial resolution SC-MSI identifies both inter- and intracellular lipid heterogeneity; this heterogeneity is further explicated by Uniform Manifold Approximation and Projection and machine learning-driven classifications. We characterize SC lipidome alteration in response to stearoyl-CoA desaturase 1 inhibition and, additionally, identify cell-layer specific lipid distribution patterns in mouse cerebellar cortex. This integrated multimodal SC-MSI technology enables high-resolution spatial mapping of intercellular and cell-to-cell lipidome heterogeneity, SC lipidome remodeling induced by pharmacological intervention, and region-specific lipid diversity within tissue.

SUBMITTER: Zhang H 

PROVIDER: S-EPMC10457347 | biostudies-literature | 2023 Aug

REPOSITORIES: biostudies-literature

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Single-cell lipidomics enabled by dual-polarity ionization and ion mobility-mass spectrometry imaging.

Zhang Hua H   Liu Yuan Y   Fields Lauren L   Shi Xudong X   Huang Penghsuan P   Lu Haiyan H   Schneider Andrew J AJ   Tang Xindi X   Puglielli Luigi L   Welham Nathan V NV   Li Lingjun L  

Nature communications 20230825 1


Single-cell (SC) analysis provides unique insight into individual cell dynamics and cell-to-cell heterogeneity. Here, we utilize trapped ion mobility separation coupled with dual-polarity ionization mass spectrometry imaging (MSI) to enable high-throughput in situ profiling of the SC lipidome. Multimodal SC imaging, in which dual-polarity-mode MSI is used to perform serial data acquisition runs on individual cells, significantly enhanced SC lipidome coverage. High-spatial resolution SC-MSI ident  ...[more]

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