Single-cell spatial metabolomics with cell-type specific protein profiling for tissue systems biology

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作者
Thomas Hu
Mayar Allam
Shuangyi Cai
Walter Henderson
Brian Yueh
Aybuke Garipcan
Anton V. Ievlev
Maryam Afkarian
Semir Beyaz
Ahmet F. Coskun
机构
[1] Georgia Institute of Technology and Emory University,Wallace H. Coulter Department of Biomedical Engineering
[2] Georgia Institute of Technology,School of Electrical and Computer Engineering
[3] Georgia Institute of Technology,Institute for Electronics and Nanotechnology
[4] Cold Spring Harbor Laboratory,Oak Ridge National Laboratory
[5] Center for Nanophase Materials Sciences,Division of Nephrology, Department of Internal Medicine
[6] University of California,Interdisciplinary Bioengineering Graduate Program
[7] Georgia Institute of Technology,Winship Cancer Institute
[8] Emory University,Parker H. Petit Institute for Bioengineering and Bioscience
[9] Georgia Institute of Technology,undefined
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摘要
Metabolic reprogramming in cancer and immune cells occurs to support their increasing energy needs in biological tissues. Here we propose Single Cell Spatially resolved Metabolic (scSpaMet) framework for joint protein-metabolite profiling of single immune and cancer cells in male human tissues by incorporating untargeted spatial metabolomics and targeted multiplexed protein imaging in a single pipeline. We utilized the scSpaMet to profile cell types and spatial metabolomic maps of 19507, 31156, and 8215 single cells in human lung cancer, tonsil, and endometrium tissues, respectively. The scSpaMet analysis revealed cell type-dependent metabolite profiles and local metabolite competition of neighboring single cells in human tissues. Deep learning-based joint embedding revealed unique metabolite states within cell types. Trajectory inference showed metabolic patterns along cell differentiation paths. Here we show scSpaMet’s ability to quantify and visualize the cell-type specific and spatially resolved metabolic-protein mapping as an emerging tool for systems-level understanding of tissue biology.
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