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Author Details

Eva P??rez-Guijarro
National Cancer Institute, National Institutes of Health (NIH)
2009
17
10
PMIDPaper TitleJournal TitlePublished Year
37333132Melanoma clonal subline analysis uncovers heterogeneity-driven immunotherapy resistance mechanisms.bioRxiv2023
37333132Melanoma clonal subline analysis uncovers heterogeneity-driven immunotherapy resistance mechanisms.bioRxiv2023
37173324Germline modifiers of the tumor immune microenvironment implicate drivers of cancer risk and immunotherapy response.Nat Commun2023
37173324Germline modifiers of the tumor immune microenvironment implicate drivers of cancer risk and immunotherapy response.Nat Commun2023
35180384Recognition of observer effect is required for rigor and reproducibility of preclinical animal studies.Cancer Cell2022
35912544Melanoma central nervous system metastases: An update to approaches, challenges, and opportunities.Pigment Cell Melanoma Res2022
35180384Recognition of observer effect is required for rigor and reproducibility of preclinical animal studies.Cancer Cell2022
35912544Melanoma central nervous system metastases: An update to approaches, challenges, and opportunities.Pigment Cell Melanoma Res2022
34941392Dietary fiber and probiotics influence the gut microbiome and melanoma immunotherapy response.Science2021
34941392Dietary fiber and probiotics influence the gut microbiome and melanoma immunotherapy response.Science2021
32284588Multimodel preclinical platform predicts clinical response of melanoma to immunotherapy.Nat Med2020
31949145Melanoblast transcriptome analysis reveals pathways promoting melanoma metastasis.Nat Commun2020
32284588Multimodel preclinical platform predicts clinical response of melanoma to immunotherapy.Nat Med2020
32657358PhISCS-BnB: a fast branch and bound algorithm for the perfect tumor phylogeny reconstruction problem.Bioinformatics2020
31949145Melanoblast transcriptome analysis reveals pathways promoting melanoma metastasis.Nat Commun2020
32657358PhISCS-BnB: a fast branch and bound algorithm for the perfect tumor phylogeny reconstruction problem.Bioinformatics2020
30581152p62/SQSTM1 Fuels Melanoma Progression by Opposing mRNA Decay of a Selective Set of Pro-metastatic Factors.Cancer Cell2019
30581152p62/SQSTM1 Fuels Melanoma Progression by Opposing mRNA Decay of a Selective Set of Pro-metastatic Factors.Cancer Cell2019
31522890UVB-Induced Tumor Heterogeneity Diminishes Immune Response in Melanoma.Cell2019
31522890UVB-Induced Tumor Heterogeneity Diminishes Immune Response in Melanoma.Cell2019
28543694Genetically engineered mouse models of melanoma.Cancer2017
28543694Genetically engineered mouse models of melanoma.Cancer2017
28756632Lymphangiogenesis: From passive disseminator to dynamic metastatic enabler.Pigment Cell Melanoma Res2017
28783722Identification of essential genes for cancer immunotherapy.Nature2017
28756632Lymphangiogenesis: From passive disseminator to dynamic metastatic enabler.Pigment Cell Melanoma Res2017
28783722Identification of essential genes for cancer immunotherapy.Nature2017
27857118Lineage-specific roles of the cytoplasmic polyadenylation factor CPEB4 in the regulation of melanoma drivers.Nat Commun2016
27857118Lineage-specific roles of the cytoplasmic polyadenylation factor CPEB4 in the regulation of melanoma drivers.Nat Commun2016
24981740RAB7 controls melanoma progression by exploiting a lineage-specific wiring of the endolysosomal pathway.Cancer Cell2014
24981740RAB7 controls melanoma progression by exploiting a lineage-specific wiring of the endolysosomal pathway.Cancer Cell2014
22067454A role for insulator elements in the regulation of gene expression response to hypoxia.Nucleic Acids Res2012
22067454A role for insulator elements in the regulation of gene expression response to hypoxia.Nucleic Acids Res2012
19647221Targeted activation of innate immunity for therapeutic induction of autophagy and apoptosis in melanoma cells.Cancer Cell2009
19647221Targeted activation of innate immunity for therapeutic induction of autophagy and apoptosis in melanoma cells.Cancer Cell2009
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Collaborators

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The University of Manchester
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MD Anderson Cancer Center
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Spanish National Cancer Research Centre-CNIO
Co-authored papers 2
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Co-authored papers 2
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Yale School of Medicine
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The University of Texas MD Anderson Cancer Center
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National Centre for Biotechnology (CNB-CSIC)
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