Single-cell transcriptomics is used here to define neuronal and neural-progenitor-like glioblastoma cell states.
First-pass extracted concept
single-cell transcriptomics
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single-cell RNA sequencing
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Evidence Snippets
Over the past several years, single-cell and spatial transcriptomics have yielded unprecedented insights into cellular, tissue, and organ physiology.
This subpopulation corresponds to neuronal and neural-progenitor-like tumor cell states, as defined by single-cell transcriptomics, both in mouse models and in the human disease.
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Linked Claims
Single-cell and spatial transcriptomics have yielded unprecedented insights into cellular, tissue, and organ physiology.
Superimposed molecular and functional single-cell data reveal that neuronal mechanisms govern glioblastoma cell invasion on multiple levels.
Quoted textsource-backed
Collectively, superimposing molecular and functional single-cell data revealed that neuronal mechanisms govern glioblastoma cell invasion on multiple levels.
The invasive synaptically connected glioblastoma subpopulation corresponds to neuronal and neural-progenitor-like tumor cell states defined by single-cell transcriptomics.
Quoted textsource-backed
This subpopulation corresponds to neuronal and neural-progenitor-like tumor cell states, as defined by single-cell transcriptomics, both in mouse models and in the human disease.