{"database":"ENA","file_versions":[{"headers":{"Content-Type":["application/json"]},"body":{"files":{"Fastqsanger.gz":["ftp://ftp.sra.ebi.ac.uk/vol1/fastq/SRR315/044/SRR31567344/SRR31567344_2.fastq.gz","ftp://ftp.sra.ebi.ac.uk/vol1/fastq/SRR315/045/SRR31567345/SRR31567345_2.fastq.gz","ftp://ftp.sra.ebi.ac.uk/vol1/fastq/SRR315/045/SRR31567345/SRR31567345_1.fastq.gz","ftp://ftp.sra.ebi.ac.uk/vol1/fastq/SRR315/044/SRR31567344/SRR31567344_1.fastq.gz"]},"type":"primary"},"statusCode":"OK","statusCodeValue":200}],"scores":null,"additional":{"omics_type":["Genomics"],"center_name":["Nankai University"],"full_dataset_link":["https://www.ebi.ac.uk/ena/browser/view/PRJNA1193014"],"scientific_name":["Mus musculus"],"tag":["xref:PubMed:39504047"],"long_description":["Retinal neovascularization poses heightened risks of vision loss and blindness. Despite its clinical significance, the molecular mechanisms underlying the pathogenesis of retinal neovascularization remain elusive. This study utilized single-cell multiomics profiling in an oxygen-induced retinopathy (OIR) model to comprehensively investigate the intricate molecular landscape of retinal neovascularization. Overall design: Multiome-seq: Single nuclei were extracted from retinas from postnatal day 17 (P17) mice under the OIR model.Joint snRNA- and scATAC libraries were prepared using the 10x Genomics platform."],"repository":["ENA"],"description_synonyms":["Panomics, dTAF[[II]]230, TAF[[II]]250, d230, Integrative-Omics, Oxygen 16, TAF200, l(3)84Ab, E-948, dTAFII250, BG:DS00004.13, 8O, TAFII-250, TAF250/230, Integrative Omics, EfW1, Cell, oxygen, dTAF230, Multi-Omics, dmTAF[[II]]230, retinal disease, TAFII250, retina eye disease., dioxygene, dmTAF1, Sauerstoff, Taf230, p230, oxigeno, Multi-Omic, TAF[[II]]250/230, Pan Omics, TFIID, retinal disorder, retinopathy, oxygene, E948, OXYGEN MOLECULE, TAF250, Taf[[II]]250, Multi Omics, O2, Taf200, Disauerstoff, dioxygen, dTAF[[II]]250, TAF[[II]]230, TFIID TAF250, cel, cell, O, Oxygen-16, eye disease of retina, Integrative, Taf1p, TAF[II]250, Omics, CG17603, TAF[[II]], dTAF250, Oxygen, DmelCG17603, [OO], Taf250, SR3-5, Pan-Omics, TAF, E 948, TAF230, molecular oxygen, Dioxygen, TAF1"],"name_synonyms":["Panomics, dTAF[[II]]230, TAF[[II]]250, d230, Integrative-Omics, Oxygen 16, TAF200, l(3)84Ab, E-948, dTAFII250, BG:DS00004.13, 8O, TAFII-250, TAF250/230, Integrative Omics, EfW1, Cell, oxygen, dTAF230, Multi-Omics, dmTAF[[II]]230, retinal disease, TAFII250, retina eye disease., dioxygene, dmTAF1, Sauerstoff, Taf230, p230, oxigeno, Multi-Omic, TAF[[II]]250/230, Pan Omics, TFIID, retinal disorder, retinopathy, oxygene, E948, OXYGEN MOLECULE, TAF250, Taf[[II]]250, Multi Omics, O2, Taf200, Disauerstoff, dioxygen, dTAF[[II]]250, TAF[[II]]230, TFIID TAF250, cel, cell, O, Oxygen-16, eye disease of retina, Integrative, Taf1p, TAF[II]250, Omics, CG17603, TAF[[II]], dTAF250, Oxygen, DmelCG17603, [OO], Taf250, SR3-5, Pan-Omics, TAF, E 948, TAF230, molecular oxygen, Dioxygen, TAF1"],"additional_accession":[]},"is_claimable":false,"name":"Single-Cell Multiomics Profiling Reveals Heterogeneity of Müller Cells in the Oxygen-Induced Retinopathy Model","description":"Single-Cell Multiomics Profiling Reveals Heterogeneity of Müller Cells in the Oxygen-Induced Retinopathy Model","dates":{"last_updated":"2025-09-24","first_public":"2024-12-06"},"accession":"PRJNA1193014","cross_references":{"GEO":["GSE283276"],"taxon":["10090"],"PubMed":["39504047"]}}