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Transcriptome analysis of a novel human iPSC-derived 3D cortical tissue model - WT, APP KI, Abeta-treated, Abeta/Aducanumab-treated

Single-cell RNA-seq analysis of human iPSC-derived microglia/astrocytes/neurons in a novel, human in vitro 3D cortical tissue model. Samples include distinct conditions (each as biological duplicates): - wild-type cells from cultures after 1 month (WT_1mo, cell lines: A18, KOLF) and 3 months (WT_3mo, cell lines: SA2, KOLF, A18) of culturing - knock-in cells from cultures carrying three familial AD mutations in the APP gene (Swedish, Iberian, Arctic; introduced by CRISPR/Cas9-mediated knock-in) after 3 months of culturing (KI_3mo, cell lines: SA2, A18) - subset of WT 1 month-old samples were exposed to 500nM synthetic Abeta42 for 2 consecutive feeds, and a subset of these subsequently treated with 1µg/ml Aducanumab antibody for 14 days

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Policy for "Transcriptome analysis of human iPSC-derived microglia in a novel human 3D cortical tissue model"

Access to generated data is made available by completing the data access agreement for review by the data access committee and will be granted exclusively to qualified investigators for appropriate use.

Studies are experimental investigations of a particular phenomenon, e.g., case-control studies on a particular trait or cancer research projects reporting matching cancer normal genomes from patients.

Study ID Study Title Study Type
EGAS50000001397 Transcriptome Analysis

This table displays only public information pertaining to the files in the dataset. If you wish to access this dataset, please submit a request. If you already have access to these data files, please consult the download documentation.

ID File Type Size Quality Report
Located in
EGAF50000492339 fastq.gz 27.9 GB
EGAF50000492340 fastq.gz 39.2 GB
EGAF50000492341 fastq.gz 43.6 GB
EGAF50000492342 fastq.gz 30.8 GB
EGAF50000492343 fastq.gz 40.0 GB
EGAF50000492344 fastq.gz 28.4 GB
EGAF50000492345 fastq.gz 28.2 GB
EGAF50000492346 fastq.gz 39.8 GB
EGAF50000492347 csv 4.2 kB
9 Files (277.9 GB)