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E-MTAB-10972 Cell line - High-throughput sequencin... Homo sapiens, Homo sapiens

Lineage recording in human cerebral organoids (Visium)

·发布 2021年11月3日
3
样本数
30
实验数
1
相关文献
实验描述

Induced pluripotent stem cell (iPSC) derived organoid systems provide models to study human organ development. Single-cell transcriptome sequencing enables highly-resolved descriptions of cell state heterogeneity within these systems and computational methods can reconstruct developmental trajectories. However, new approaches are needed to directly measure lineage relationships in these systems. Here we establish an inducible dual channel lineage recorder, iTracer, that couples reporter barcodes, inducible CRISPR/Cas9 scarring, and single-cell transcriptomics to analyze state and lineage relationships in iPSC-derived systems. This data set include the spatial iTracer data of three slices of one cerebral organoid measured by 10x Visium.

参考文献
Lineage recording reveals dynamics of cerebral organoid regionalization
Zhisong He, Tobias Gerber, Ashley Maynard, Akanksha Jain, Rebecca Petri, Malgorzata Santel, Kevin Ly, Leila Sidow, Fátima Sanchís-Calleja, Stephan Riesenberg, J. Gray Camp, Barbara Treutlein
样本属性
Organism
Homo sapiens
Disease
normal
Cell line
409B2-iCas9
Genotype
iTracer
Progenitor cell type
induced pluripotent stem cell
Growth condition
cerebral organoid
Cell type
brain cell
Sampling time point
60
Sampling site
SLICE1, SLICE2, SLICE3
实验信息
登记号
E-MTAB-10972
实验类型
Cell line - High-throughput sequencing, spatial transcriptomics by high-throughput sequencing
物种
Homo sapiens, Homo sapiens
发布日期
2021年11月3日
提交者
Zhisong He、 Ashley Maynard、 Gray Camp、 Barbara Treutlein
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