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Toxoplasma gondii is an obligate intracellular protozoan parasite that poses a severe threat to human health, especially those immune-compromised individuals. Sulfadiazine sodium (SDZ) is widely used for the treatment of human toxoplasmosis. However, systems biology researches on the therapeutic eff...
2019-06-18 | MTBLS852 | MetaboLights
We found that AhR, a unique chemical sensor, is critical in controlling mast cell differentiation, growth and function in vitro and in vivo. This study seeks to further the understanding of the mechanisms of how AhR control mast cell homeostasis. Three different batches of bone marrow derived mast c...
ORGANISM(S): Mus musculus 
Better understanding of the molecular changes associated with disease is essential for identifying new routes to improved therapeutics and diagnostic tests. The aim of this study was to investigate the dynamic changes in the metabolic profile of mouse sera during T. gondii infection. We carried out ...
2017-01-25 | MTBLS216 | MetaboLights
The interplay between the Apicomplexan parasite Toxoplasma gondii and its host has been largely studied. However, molecular changes at the metabolic level in the host central nervous system and pathogenesis-associated metabolites during brain infection are largely unexplored. We used a global metabo...
2017-01-27 | MTBLS217 | MetaboLights
Toxoplasma gondii is an obligate intracellular parasite causing severe diseases in immunocompromised individuals and congenitally infected neonates, such as encephalitis and chorioretinitis. This study aimed to determine whether serum metabolic profiling can (i) identify metabolites associated with ...
2018-04-16 | MTBLS418 | MetaboLights
Toxoplasma gondii poses a great threat to human health, with no approved vaccine available for the treatment of T. gondii infection. T. gondii infections are not limited to the brain, and may also affect other organs especially the liver. Identification of host liver molecules or pathways involved i...
2019-08-06 | MTBLS586 | MetaboLights
Although covalent protein binding is established as the pivotal event underpinning acetaminophen (APAP) toxicity, its mechanistic details remain unclear. In this study, we demonstrated that APAP induces widespread protein glutathionylation in a time-, dose- and bioactivation-dependent manner in Hepa...
ORGANISM(S): Homo Sapiens (human) 
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