Ida Larsson
Postdoctoral position at Department of Immunology, Genetics and Pathology; Research programme: Neuro-oncology and neurodegeneration; Research group Fredrik Swartling
- E-mail:
- ida.c.larsson@igp.uu.se
- Visiting address:
- Dag Hammarskjölds väg 20
751 85 Uppsala - Postal address:
- Rudbecklaboratoriet
751 85 UPPSALA

Publications
Recent publications
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The invasion phenotypes of glioblastoma depend on plastic and reprogrammable cell states
Part of Nature Communications, 2025
- DOI for The invasion phenotypes of glioblastoma depend on plastic and reprogrammable cell states
- Download full text (pdf) of The invasion phenotypes of glioblastoma depend on plastic and reprogrammable cell states
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Reconstructing the regulatory programs underlying the phenotypic plasticity of neural cancers
Part of Nature Communications, 2024
- DOI for Reconstructing the regulatory programs underlying the phenotypic plasticity of neural cancers
- Download full text (pdf) of Reconstructing the regulatory programs underlying the phenotypic plasticity of neural cancers
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2023
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Modeling glioblastoma heterogeneity as a dynamic network of cell states
Part of Molecular Systems Biology, 2021
- DOI for Modeling glioblastoma heterogeneity as a dynamic network of cell states
- Download full text (pdf) of Modeling glioblastoma heterogeneity as a dynamic network of cell states
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Modeling glioblastoma heterogeneity as a dynamic network of cell states
Part of Molecular Systems Biology, 2021
- DOI for Modeling glioblastoma heterogeneity as a dynamic network of cell states
- Download full text (pdf) of Modeling glioblastoma heterogeneity as a dynamic network of cell states
All publications
Articles in journal
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The invasion phenotypes of glioblastoma depend on plastic and reprogrammable cell states
Part of Nature Communications, 2025
- DOI for The invasion phenotypes of glioblastoma depend on plastic and reprogrammable cell states
- Download full text (pdf) of The invasion phenotypes of glioblastoma depend on plastic and reprogrammable cell states
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Reconstructing the regulatory programs underlying the phenotypic plasticity of neural cancers
Part of Nature Communications, 2024
- DOI for Reconstructing the regulatory programs underlying the phenotypic plasticity of neural cancers
- Download full text (pdf) of Reconstructing the regulatory programs underlying the phenotypic plasticity of neural cancers
-
Modeling glioblastoma heterogeneity as a dynamic network of cell states
Part of Molecular Systems Biology, 2021
- DOI for Modeling glioblastoma heterogeneity as a dynamic network of cell states
- Download full text (pdf) of Modeling glioblastoma heterogeneity as a dynamic network of cell states
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Modeling glioblastoma heterogeneity as a dynamic network of cell states
Part of Molecular Systems Biology, 2021
- DOI for Modeling glioblastoma heterogeneity as a dynamic network of cell states
- Download full text (pdf) of Modeling glioblastoma heterogeneity as a dynamic network of cell states
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Genome-Scale Metabolic Modeling of Glioblastoma Reveals Promising Targets for Drug Development
Part of Frontiers in Genetics, 2020
- DOI for Genome-Scale Metabolic Modeling of Glioblastoma Reveals Promising Targets for Drug Development
- Download full text (pdf) of Genome-Scale Metabolic Modeling of Glioblastoma Reveals Promising Targets for Drug Development
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Integrative discovery of treatments for high-risk neuroblastoma
Part of Nature Communications, 2020
- DOI for Integrative discovery of treatments for high-risk neuroblastoma
- Download full text (pdf) of Integrative discovery of treatments for high-risk neuroblastoma