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Items: 1 to 20 of 152

  • Unknown field was ignored: [365].
1.

PRC2-mediated apoptosis evasion is a therapeutic target of MDS/AML harboring inv(3)/t(3;3) and monosomy 7 (CUT&Tag)

Organism:
Homo sapiens
Taxonomy:
Homo sapiens (human)
Project data type: Epigenomics
Scope:
Multiisolate
Department of Stem Cell and Immune Regulation, Yokohama City University Graduate School of Medicine
Accession:
PRJNA1128130
ID:
1128130
2.

SFRP2 modulates functional phenotype transition and energy metabolism of macrophages during diabetic wound healing [RAW264.7 cells]

Organism:
Mus musculus
Taxonomy:
Mus musculus (house mouse)
Project data type: Transcriptome or Gene expression
Scope:
Multiisolate
Guangdong medical university
Accession:
PRJNA1118696
ID:
1118696
3.

High-throughout sequencing of RAW264.7 cells treated with LPS and Harmine

Organism:
Mus musculus
Taxonomy:
Mus musculus (house mouse)
Project data type: Transcriptome or Gene expression
Scope:
Multiisolate
Wenzhou Medical University
Accession:
PRJNA1111748
ID:
1111748
4.

Effect of depletion of CDK4 on gene expression of MCF-7 breast cance cells

Organism:
Homo sapiens
Taxonomy:
Homo sapiens (human)
Project data type: Transcriptome or Gene expression
Scope:
Multiisolate
Divison of Anti-Tumor Pharmacology, Shanghai Institute of Materia Medica, Chinese Academy of Sciences
Accession:
PRJNA1089108
ID:
1089108
5.

Deoxynivalenol Induces Cell Senescence in RAW264.7 Macrophages via HIF-1α-Mediated Activation of the p53/p21 Pathway

DON induces cell senescence in RAW264.7 macrophages by modulating the HIF-1α/p53/p21 pathway

Project data type: Other
Scope:
Monoisolate
Jiefeng Li
Accession:
PRJEB73298
ID:
1084543
6.

Homo sapiens

A let-7 microRNA-RALB regulatory axis links the immune properties of iPSC-derived megakaryocytes in platelet production

Taxonomy:
Homo sapiens (human)
Project data type: Transcriptome or Gene expression
Scope:
Monoisolate
Innovative Regenerative Medicine, Graduate School of Medicine and School of Medicine, Chiba University
Accession:
PRJDB15883
ID:
1079570
7.

Effect of targeted degradation of androgen receptor full-length and variant-7 on gene expression in castration-resistant prostate cancer cells

Organism:
Homo sapiens
Taxonomy:
Homo sapiens (human)
Project data type: Transcriptome or Gene expression
Scope:
Multiisolate
Seoul National University
Accession:
PRJNA1046401
ID:
1046401
8.

Genome-wide Mapping of GATA4 in Breast Cancer MCF-7 Cell Chromatin State.

Organism:
Homo sapiens
Taxonomy:
Homo sapiens (human)
Project data type: Epigenomics
Scope:
Multiisolate
Research Center of Translational Medicine, Central Hospital Affiliated to Shandong First Medical University
Accession:
PRJNA1032419
ID:
1032419
9.

RNA-seq of RAW264.7 macrophages pre activated by Mycobacterium marinum

Project data type: Raw sequence reads
Scope:
Multispecies
Southern Medical University
Accession:
PRJNA1031148
ID:
1031148
10.

Hypoxia inducible microRNA-155 negatively regulates epithelial barrier in Eosinophilic Esophagitis by suppressing Tight Junction Claudin-7

Organism:
Homo sapiens
Taxonomy:
Homo sapiens (human)
Project data type: Transcriptome or Gene expression
Scope:
Multiisolate
AIRR Lab, Biology, Maynooth University
Accession:
PRJNA1023925
ID:
1023925
11.

Homo sapiens

Tumorigenicity of Li-7

Taxonomy:
Homo sapiens (human)
Project data type: Transcriptome or Gene expression
Scope:
Monoisolate
Cell Engineering Division, RIEKN BRC
Accession:
PRJDB16268
ID:
1008444
12.

miR-7 controls glutamatergic transmission and neuronal connectivity in a Cdr1as-dependent manner

Organism:
Mus musculus
Taxonomy:
Mus musculus (house mouse)
Project data type: Transcriptome or Gene expression
Scope:
Multiisolate
BIMSB, Max Delbrück Center for Molecular Medicine
Accession:
PRJNA930025
ID:
930025
13.

Next Generation Sequencing and Analysis of the Transcriptomes of RAW264.7 cells pretreated with PEP and PBS.

Organism:
Mus musculus
Taxonomy:
Mus musculus (house mouse)
Project data type: Transcriptome or Gene expression
Scope:
Multiisolate
Peking Union Medical College&Chinese Academy of Medical Sciences
Accession:
PRJNA925439
ID:
925439
14.

Multi-omics profiling of the impact of an Angiotensin (1-7)-expressing probiotic combined with exercise training in aged male rats

Organism:
Rattus norvegicus
Taxonomy:
Rattus norvegicus (Norway rat)
Project data type: Transcriptome or Gene expression
Scope:
Multiisolate
University of Alabama at Birmingham
Accession:
PRJNA882019
ID:
882019
15.

MTA1 promotes prostate cancer progression by upregulating androgen receptor splice variant-7 (AR-V7)

Project data type: Raw sequence reads
Scope:
Multispecies
Hebei Medical University
Accession:
PRJNA869322
ID:
869322
16.

Effect of depletion of KLB or various combinations of FGFR1, FGFR3, and FGFR4 on gene expression in HuH-7 and JHH-7 cells

Organism:
Homo sapiens
Taxonomy:
Homo sapiens (human)
Project data type: Transcriptome or Gene expression
Scope:
Multiisolate
National Institute of Biological Sciences,Beijing
Accession:
PRJNA859526
ID:
859526
17.

Transcriptomic analysis of TCF-7 cKO CD4 T cells

Organism:
Mus musculus
Taxonomy:
Mus musculus (house mouse)
Project data type: Transcriptome or Gene expression
Scope:
Multiisolate
Karimi, Microbiology/Immunology, Suny Upstate Medical University
Accession:
PRJNA842069
ID:
842069
18.

Td-BE-NGS-7

Project data type: Raw sequence reads
Scope:
Multispecies
School of Life Science ,East China Normal University
Accession:
PRJNA835701
ID:
835701
19.

The miR-15a/16-1 and miR-15b/16-2 clusters regulate early B cell development by limiting IL-7 receptor expression

Organism:
Mus musculus
Taxonomy:
Mus musculus (house mouse)
Project data type: Transcriptome or Gene expression
Scope:
Multiisolate
Institute of Developmental Immunology, Medical University of Innsbruck, Biocenter
Accession:
PRJNA830480
ID:
830480
20.

MYCMI-7 - a small MYC-binding compound that inhibits MYC:MAX interaction and tumor growth in a MYC-dependent manner

Organism:
Homo sapiens
Taxonomy:
Homo sapiens (human)
Project data type: Transcriptome or Gene expression
Scope:
Multiisolate
Microbiology, Tumor and Cell Biology, Karolinska Institute
Accession:
PRJNA808742
ID:
808742

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