Table S4 from A Single-Cell Taxonomy Predicts Inflammatory Niche Remodeling to Drive Tissue Failure and Outcome in Human AML

<p>Table S4 Differentially expressed genes and transcriptional programs (GSEA Hallmark) in BMSCs from AML vs. BMSCs from NBM (scRNAseq)</p>

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Príomhchruthaitheoir: Lanpeng Chen (16918293) (author)
Rannpháirtithe: Eline Pronk (16918296) (author), Claire van Dijk (16918299) (author), Yujie Bian (16918302) (author), Jacqueline Feyen (16918305) (author), Tim van Tienhoven (16918308) (author), Meltem Yildirim (16918311) (author), Paola Pisterzi (16918314) (author), Madelon M.E. de Jong (16918317) (author), Alejandro Bastidas (16918320) (author), Remco M. Hoogenboezem (16918323) (author), Chiel Wevers (16918326) (author), Eric M. Bindels (15117841) (author), Bob Löwenberg (16918329) (author), Tom Cupedo (16918332) (author), Mathijs A. Sanders (16918335) (author), Marc H.G.P. Raaijmakers (16918338) (author)
Foilsithe / Cruthaithe: 2025
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_version_ 1849927640303009792
author Lanpeng Chen (16918293)
author2 Eline Pronk (16918296)
Claire van Dijk (16918299)
Yujie Bian (16918302)
Jacqueline Feyen (16918305)
Tim van Tienhoven (16918308)
Meltem Yildirim (16918311)
Paola Pisterzi (16918314)
Madelon M.E. de Jong (16918317)
Alejandro Bastidas (16918320)
Remco M. Hoogenboezem (16918323)
Chiel Wevers (16918326)
Eric M. Bindels (15117841)
Bob Löwenberg (16918329)
Tom Cupedo (16918332)
Mathijs A. Sanders (16918335)
Marc H.G.P. Raaijmakers (16918338)
author2_role author
author
author
author
author
author
author
author
author
author
author
author
author
author
author
author
author_facet Lanpeng Chen (16918293)
Eline Pronk (16918296)
Claire van Dijk (16918299)
Yujie Bian (16918302)
Jacqueline Feyen (16918305)
Tim van Tienhoven (16918308)
Meltem Yildirim (16918311)
Paola Pisterzi (16918314)
Madelon M.E. de Jong (16918317)
Alejandro Bastidas (16918320)
Remco M. Hoogenboezem (16918323)
Chiel Wevers (16918326)
Eric M. Bindels (15117841)
Bob Löwenberg (16918329)
Tom Cupedo (16918332)
Mathijs A. Sanders (16918335)
Marc H.G.P. Raaijmakers (16918338)
author_role author
dc.creator.none.fl_str_mv Lanpeng Chen (16918293)
Eline Pronk (16918296)
Claire van Dijk (16918299)
Yujie Bian (16918302)
Jacqueline Feyen (16918305)
Tim van Tienhoven (16918308)
Meltem Yildirim (16918311)
Paola Pisterzi (16918314)
Madelon M.E. de Jong (16918317)
Alejandro Bastidas (16918320)
Remco M. Hoogenboezem (16918323)
Chiel Wevers (16918326)
Eric M. Bindels (15117841)
Bob Löwenberg (16918329)
Tom Cupedo (16918332)
Mathijs A. Sanders (16918335)
Marc H.G.P. Raaijmakers (16918338)
dc.date.none.fl_str_mv 2025-11-24T22:01:58Z
dc.identifier.none.fl_str_mv 10.1158/2643-3230.30698649
dc.relation.none.fl_str_mv https://figshare.com/articles/dataset/Table_S4_from_A_Single-Cell_Taxonomy_Predicts_Inflammatory_Niche_Remodeling_to_Drive_Tissue_Failure_and_Outcome_in_Human_AML/30698649
dc.rights.none.fl_str_mv CC BY
info:eu-repo/semantics/openAccess
dc.subject.none.fl_str_mv Cancer
Cancer Risk Factors
Tumor Biology
Molecular and Cellular Biology
Endogenous Risk Factors
Inflammation
Hematological Cancers
Leukemias
Stem Cell Biology
Mesenchymal stem cells
Tumor Microenvironment
Tumor-stromal cell interactions
dc.title.none.fl_str_mv Table S4 from A Single-Cell Taxonomy Predicts Inflammatory Niche Remodeling to Drive Tissue Failure and Outcome in Human AML
dc.type.none.fl_str_mv Dataset
info:eu-repo/semantics/publishedVersion
dataset
description <p>Table S4 Differentially expressed genes and transcriptional programs (GSEA Hallmark) in BMSCs from AML vs. BMSCs from NBM (scRNAseq)</p>
eu_rights_str_mv openAccess
id Manara_892a52d1508a794b7e1813135dc8a5ec
identifier_str_mv 10.1158/2643-3230.30698649
network_acronym_str Manara
network_name_str ManaraRepo
oai_identifier_str oai:figshare.com:article/30698649
publishDate 2025
repository.mail.fl_str_mv
repository.name.fl_str_mv
repository_id_str
rights_invalid_str_mv CC BY
spelling Table S4 from A Single-Cell Taxonomy Predicts Inflammatory Niche Remodeling to Drive Tissue Failure and Outcome in Human AMLLanpeng Chen (16918293)Eline Pronk (16918296)Claire van Dijk (16918299)Yujie Bian (16918302)Jacqueline Feyen (16918305)Tim van Tienhoven (16918308)Meltem Yildirim (16918311)Paola Pisterzi (16918314)Madelon M.E. de Jong (16918317)Alejandro Bastidas (16918320)Remco M. Hoogenboezem (16918323)Chiel Wevers (16918326)Eric M. Bindels (15117841)Bob Löwenberg (16918329)Tom Cupedo (16918332)Mathijs A. Sanders (16918335)Marc H.G.P. Raaijmakers (16918338)CancerCancer Risk FactorsTumor BiologyMolecular and Cellular BiologyEndogenous Risk FactorsInflammationHematological CancersLeukemiasStem Cell BiologyMesenchymal stem cellsTumor MicroenvironmentTumor-stromal cell interactions<p>Table S4 Differentially expressed genes and transcriptional programs (GSEA Hallmark) in BMSCs from AML vs. BMSCs from NBM (scRNAseq)</p>2025-11-24T22:01:58ZDatasetinfo:eu-repo/semantics/publishedVersiondataset10.1158/2643-3230.30698649https://figshare.com/articles/dataset/Table_S4_from_A_Single-Cell_Taxonomy_Predicts_Inflammatory_Niche_Remodeling_to_Drive_Tissue_Failure_and_Outcome_in_Human_AML/30698649CC BYinfo:eu-repo/semantics/openAccessoai:figshare.com:article/306986492025-11-24T22:01:58Z
spellingShingle Table S4 from A Single-Cell Taxonomy Predicts Inflammatory Niche Remodeling to Drive Tissue Failure and Outcome in Human AML
Lanpeng Chen (16918293)
Cancer
Cancer Risk Factors
Tumor Biology
Molecular and Cellular Biology
Endogenous Risk Factors
Inflammation
Hematological Cancers
Leukemias
Stem Cell Biology
Mesenchymal stem cells
Tumor Microenvironment
Tumor-stromal cell interactions
status_str publishedVersion
title Table S4 from A Single-Cell Taxonomy Predicts Inflammatory Niche Remodeling to Drive Tissue Failure and Outcome in Human AML
title_full Table S4 from A Single-Cell Taxonomy Predicts Inflammatory Niche Remodeling to Drive Tissue Failure and Outcome in Human AML
title_fullStr Table S4 from A Single-Cell Taxonomy Predicts Inflammatory Niche Remodeling to Drive Tissue Failure and Outcome in Human AML
title_full_unstemmed Table S4 from A Single-Cell Taxonomy Predicts Inflammatory Niche Remodeling to Drive Tissue Failure and Outcome in Human AML
title_short Table S4 from A Single-Cell Taxonomy Predicts Inflammatory Niche Remodeling to Drive Tissue Failure and Outcome in Human AML
title_sort Table S4 from A Single-Cell Taxonomy Predicts Inflammatory Niche Remodeling to Drive Tissue Failure and Outcome in Human AML
topic Cancer
Cancer Risk Factors
Tumor Biology
Molecular and Cellular Biology
Endogenous Risk Factors
Inflammation
Hematological Cancers
Leukemias
Stem Cell Biology
Mesenchymal stem cells
Tumor Microenvironment
Tumor-stromal cell interactions