Mutant CTNNB1 and histological heterogeneity define metabolic subtypes of hepatoblastoma
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Hepatocellular carcinoma (HCC) is one of the leading causes of cancer death worldwide. Gaining insight into the molecular pathways involved in the development of HCC is hence a prerequisite to design and develop novel and effective therapeutic strategies. ...
While altered metabolism is a well-established tumor cell trait, the specifics of metabolic rewiring during cancer development and progression are yet to be fully understood. The Warburg effect, or aerobic glycolysis, has been described in a wide array of ...
Hepatocellular carcinoma (HCC) represents the second leading cause of cancer-related deaths and is reported to be resistant to chemotherapy caused by tumor-initiating cells. These tumor-initiating cells express stem cell markers. An accumulation of tumor-i ...
The Mesenchymal Stem Cell (MSC) is a self-renewing multipotent progenitor originally found in the bone marrow. It has drawn strong interest from translational research because of the multipotency of MSCs, their immunosuppression, their intrinsic homing and ...
Here we report the identification of a proliferative, viable, and hyperdiploid tumor cell subpopulation present within Glioblastoma (GB) patient tumors. Using xenograft tumor models, we demonstrate that hyperdiploid cell populations are maintained in xenog ...
Cancer cells have been shown to undergo a metabolic reprogramming, known as the Warburg effect, which results in enhanced glycolytic fluxes and down- regulated oxidative phosphorylation even in the presence of abundant oxygen. Experiments show that disrupt ...