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Organizing biological data
Transcriptional and Cellular Response of hiPSC-derived Microglia-Neural Progenitor Co-Cultures Exposed to IL-6
Acute IL-6 exposure triggers canonical IL6Ra signaling in hiPSC microglia, but not neural progenitor cells
miRNA seqencing for transcriptional profiles of blood specimens and NPC cells or NP69 cell
Clusters of lineage-specific genes are anchored by ZNF274 in repressive perinucleolar compartments [EM-seq]
Clusters of lineage-specific genes are anchored by ZNF274 in repressive perinucleolar compartments [scRNA-seq]
ATAC-seq in the differentiation system ESC to NPC upon O-GlcNAc removal
Nuclear mRNA-seq in the differentiation system ESC to NPC upon O-GlcNAc removal
RNA-Seq of WT and Mecp2 KO hippocampus after transplantation with Neural/Precursor Cells (NPCs)
RNA-Seq of WT and Mecp2 KO cerebellum after transplantation with Neural/Precursor Cells (NPCs)
Ketosis Induced Impairment of Fetal Kidney Development
Expression data from human trisomy 21 and euploid fibroblasts, iPSCs, and neural progenitor cells
Generating iAstrocytes from hiPSCs by combining low-density passaging of NPCs and NFIA transdifferentiation
Defining heritability, plasticity, and transition dynamics of cellular phenotypes in somatic evolution
Assessment and Evaluation of Contemporary Approaches for Astrocyte Differentiation from hiPSCs: A Modeling Paradigm for Alzheimer's Disease
Patient TSC2 Mutant Cells Exhibit Aberrations in Early Neurodevelopment Accompanied by Changes in the DNA Methylome (Bisulfite-Seq)
Genome organization regulates nuclear pore complex formation and promotes differentiation during Drosophila oogenesis [RNA-Seq2]
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Novel strategies to improve niche colonization and microbial interactions of organohalide-respiring bacteria for remediation of chloroethenes-contaminated sites
RNA-seq for NPC
A disease similarity approach identifies short-lived Niemann-Pick type C disease mice with accelerated brain aging as a novel mouse model for Alzheimer’s disease and aging research
Fully defined NGN2 neuron protocol reveals diverse signatures of neuronal maturation
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