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Series GSE248178 Query DataSets for GSE248178
Status Public on Dec 19, 2023
Title Modeling the next-generation of rhabdomyosarcoma organoids to predict effective drug combinations [scRNAseq]
Organism Homo sapiens
Experiment type Expression profiling by high throughput sequencing
Summary Rhabdomyosarcoma (RMS) is the main form of pediatric soft-tissue sarcoma. Its cure rate has not improved in the last 20 years notably following relapse, and the lack of reliable preclinical models has so far hampered the design of new therapies. This is particularly true for highly heterogeneous fusion-negative RMS (FNRMS). Although methods have been proposed to establish FNRMS organoids, their efficiency remains limited to date, both in terms of derivation rate and ability to accurately mimic the original tumor.
Here, we present the development of a next-generation 3D-organoid model derived from relapsed adult and pediatric FNRMS. This model preserves the molecular features of the patients’ tumors and is expandable for several months in 3D, reinforcing its interest to drug combination screening with longitudinal efficacy monitoring.
As a proof-of-concept, we demonstrated its preclinical relevance by reevaluating the therapeutic opportunities of targeting apoptosis in FNRMS from a streamlined approach based on transcriptomic data exploitation.
 
Overall design We performed single-cell RNAseq transcriptome profiling of 1 rhabdomyosarcoma patient-derived in vitro model (2 samples)
 
Contributor(s) Broutier L, Diot T
Citation(s) 38118405
Submission date Nov 17, 2023
Last update date Jan 12, 2024
Contact name Thomas Diot
Organization name Cancer Research Center of Lyon
Street address 28 Rue Laennec
City Lyon
ZIP/Postal code 69008
Country France
 
Platforms (1)
GPL24676 Illumina NovaSeq 6000 (Homo sapiens)
Samples (2)
GSM7906868 RMS1_O_P13 [scRNAseq]
GSM7906869 RMS1_O_P14 [scRNAseq]
This SubSeries is part of SuperSeries:
GSE248183 Modeling the next-generation of rhabdomyosarcoma organoids to predict effective drug combinations
Relations
BioProject PRJNA1041883

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Supplementary file Size Download File type/resource
GSE248178_RAW.tar 211.4 Mb (http)(custom) TAR (of MTX, TSV)
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Raw data are available in SRA
Processed data provided as supplementary file

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