Alterations in cell metabolism, including changes in lipid composition occurring during malignancy, are well characterized for various tumor types. However, a significant part of studies that deal with brain tumors have been performed using cell cultures and animal models. Here, we present a data...
The molecular heterogeneity of brain metastases hampers therapeutic development for cures. To address this unmet and urgent need, we constructed a comprehensive multi-omic, single cell, and spatially resolved atlas of 1,032 pan-cancer brain metastases, identifying four robust molecular subtypes ...
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...
Metastatic breast tumors must adapt to the metabolic constraints of their target tissues. To understand how tumor metabolism varies across sites, we compared glucose utilization in primary mammary fat pad (MFP) tumors and brain metastases derived from the breast cancer cell line MDA-MB-231. Tumor...
Human brain organoids are emerging models to study human brain development and pathology as they recapitulate the development and characteristics of major neural cell types, and enable manipulation through an in vitro system. Over the past decade, with the advent of spatial technologies,...