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Human brain organoids are emerging models to study human brain development and pathology as they recapitulate the development and characteristics of major neural cell types, and enable manipulation through an in vitro system. Over the past decade, with the advent of spatial technologies,...

2023-05-23 | MTBLS7565 | MetaboLights

The molecular heterogeneity of brain metastases hampers therapeutic development for cures. To address this unmet and urgent need, we constructed a comprehensive multi-omic, single cell, and spatially resolved atlas of 1,032 pan-cancer brain metastases, identifying four robust molecular subtypes ...

2025-12-22 | MTBLS13554 | MetaboLights
There are on-going efforts to steer brain organoid development toward distinct regional identities by supplying cues in defined culture conditions. Here we incubated developing organoids with a number of patterning molecules at different concentrations to assess their effects on establishing brain r...
ORGANISM(S): Homo sapiens 
Here, we generated multiome (coupled scRNA-seq and scATAC-seq) data over a time course of mid- and hindbrain organoid development to map cell composition and explore the regulatory mechanisms underlying cell type maturation. The dataset incorporates 5 time points from day 7 to day 120 from 3 human i...
ORGANISM(S): Homo sapiens 
iPSC-derived microglia export cholesterol to neuronal cells in human brain organoids and promote their maturation
ORGANISM(S): Homo Sapiens (human) 
To investigate the heterogeneity during the neuroepithelial stage of organoid development, we performed a multiome experiment on day 15-18 old brain organoids
ORGANISM(S): Homo sapiens 
While extensive research has examined the neuroinvasiveness of SARS-CoV-2, its relationship with brain maturation remains unclear. Using a multi-omics approach, we established cerebral organoids (CBOs) at day 60 (EB60) and day 120 (EB120) to model immature and mature developmental stages. We found t...
2026-06-18 | MTBLS14790 | MetaboLights
To pattern novel posterior brain regions, we used a multiplexed morphogen screen with a single-cell sequencing readout to test 48 concentrations and combinations of 10 morphogens involved in brain patterning. This screen revealed the emergence of regions harboring under-represented cell types, such ...
ORGANISM(S): Homo sapiens 
Here we have provided scRNAseq datasets of unguided human brain organoids. The organoids were sequenced as a 1) Timecourse, 2) With different extracellular matrix treatments, 3) chemical treatment and 4) from organoids ere generated with a gene knockout cell line. Brain organoids enable the mechanis...
ORGANISM(S): Homo sapiens 
To study the effect of GLI3 knockout in brain organoids, we collected scRNA-seq data from 45 day old brain organoids with GLI3 KO
ORGANISM(S): Homo sapiens 
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