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The gut microbiota operates at the interface of host-environment interactions to influence human homeostasis and metabolic networks. Environmental factors that unbalance gut microbial ecosystems can therefore elicit physiological and disease-associated responses across somatic tissues. However, t...

2024-02-12 | MTBLS1629 | MetaboLights
PBMCs from MED patients carrying the MATN3 V194D mutation and unaffected controls were reprogrammed into hiPSCs. Samples were differentiated into Day 21 cartilage pellets via an iMSC intermediate.
ORGANISM(S): Homo sapiens 
This study characterizes the gene expression changes during the differentiation of the human embryonic stem cell (hESC) line Man13 into hypertrophic-like cartilage pellets. Samples include five key stages: pluripotent cells (TeSR™-E8™), induced mesenchymal stromal cells (iMSCs), and three-dimensiona...
ORGANISM(S): Homo sapiens 
PBMCs from MED patients carrying the MATN3 T195K mutation and unaffected controls were reprogrammed into hiPSCs using Sendai virus. Data includes three differentiation stages: pluripotent hiPSCs, iMSCs, and Day 21 cartilage pellets. Sequencing was performed at the University Genomics Core Facility.
ORGANISM(S): Homo sapiens 
RNA-seq of control and MATN3 V194D mutant cartilage pellets. The MATN3 V194D mutation was introduced using CRISPR-Cas9 in pluripotent cells before differentiation through an iMSC intermediate to Day 21 cartilage pellets.
ORGANISM(S): Homo sapiens 
GenomEUtwin Finnish (FIN) samples
NcOEDG Helsinki 3 samples
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