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Human lifetime exposure to arsenic through drinking water, food supply or industrial pollution leads to its accumulation in many organs such as liver, kidneys, lungs or pancreas but also adipose tissue. Recently, population-based studies revealed the association between arsenic exposure and the deve...
2025-05-23 | MTBLS8808 | MetaboLights
Obesity is considered as a major public health concern with strong economic and social burdens. Exposure to pollutants such as heavy metals can contribute to the development of obesity and its associated metabolic disorders, including type 2 diabetes and cardiovascular diseases. Adipose tissue is an...
2023-06-29 | MTBLS4128 | MetaboLights

The integration of omics technologies into molecular biological research has transformed it into a field where a system can be investigated as a whole by combining information from multiple biochemical layers. This extension of traditional molecular biology, where various data sources are conside...

2025-11-12 | MTBLS12307 | MetaboLights

To understand the molecular changes that underwrite enhanced mitochondrial respiration upon MTCH2 knockdown, we performed lipidomics profiling in hMADs adipocytes.

2025-08-04 | MTBLS12815 | MetaboLights
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ORGANISM(S): Mus musculus 

Glioblastoma multiforme (GBM) is highly aggressive, with treatment resistance and recurrence driven by metabolically plastic glioma stem cells (GSCs). Inspired by brown adipose tissue (BAT) thermogenesis, researchers transplanted BAT-derived mitochondria (BA-Mito) into GSCs, reducing stemness mar...

2025-08-27 | MTBLS12901 | MetaboLights
We have identified a population of adipocytes in fat tissue that arise from bone marrow-derived progenitor cells. We used microarrays to compare the global gene expression patterns of the bone marrow progenitor-derived adipocytes as well as conventional white and brown adipocytes to evaluate the rel...
ORGANISM(S): Mus musculus 
Classical brown adipocytes in interscapular BAT (Myf-5 derived) and inducible beige cells in WAT (non-Myf-5 derived) have distinct developmental origins, although both cell types have morphological and biochemical characteristics of brown fat such as the expression of UCP1. This raises an important ...
ORGANISM(S): Mus musculus 
We hypothesized that adipocytes can be triggered by asbestos fibers to produce an inflammatory response. Microarray-based gene expression analysis was thus carried out to identify potential inflammation-related candidates with altered expression in adipocytes following asbestos exposure. We found ch...
ORGANISM(S): Mus musculus 
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