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Spatial metabolomics describes the location and chemistry of small molecules involved in metabolic phenotypes, defense molecules and chemical interactions in natural communities. Most current techniques are unable to spatially link the genotype and metabolic phenotype of microorganisms in situ at a ...
2019-11-15 | MTBLS744 | MetaboLights
Spatial metabolomics describes the location and chemistry of small molecules involved in metabolic phenotypes, defense molecules and chemical interactions in natural communities. Most current techniques are unable to spatially link the genotype and metabolic phenotype of microorganisms in situ at a ...
2019-11-15 | MTBLS746 | MetaboLights
Spatial metabolomics describes the location and chemistry of small molecules involved in metabolic phenotypes, defense molecules and chemical interactions in natural communities. Most current techniques are unable to spatially link the genotype and metabolic phenotype of microorganisms in situ at a ...
2019-11-15 | MTBLS805 | MetaboLights

BACKGROUND: The gut-brain axis and the intestinal microbiota are emerging as key players in health and disease. Shifts in intestinal microbiota composition affect a variety of systems, however, evidence of their direct impact on cognitive functions is still lacking. We tested whe...

2021-12-17 | MTBLS1437 | MetaboLights
Post-transplant hepatocellular carcinoma (HCC) recurrence is a devastating disease with an abysmal prognosis and no established treatment or prevention options. We performed spatial analysis to profile the tumor immune microenvironment in primary HCC at liver transplantation and in recurrent HCC at ...
ORGANISM(S): Homo sapiens 
Developing effective model systems to evaluate new potential chemotherapeutic reagents is critical. Three-dimensional cell cultures, such as spheroids, aid in bridging the gap between commonly used monolayer cell cultures and significantly more complex and expensive animal models. Spheroid model sys...
ORGANISM(S): Homo sapiens (Human) 
2024-08-09 | PXD038958 | Pride
New workflow for spatial bottom-up proteomics at single-cell resolution.
ORGANISM(S): Homo sapiens (Human) 
2025-05-07 | PXD056528 | Pride
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