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Identifying metabolic mechanisms of metastasis progression

GSE287197 Mus musculus Expression profiling by high throughput sequencing 10 samples 2026/02/17 GPL24247
Summary
The lung is one of the most common sites for metastasis, and various cell types within the lung microenvironment have been shown to facilitate and regulate metastatic outgrowth. Here, we aim to identify the metabolic mechanisms driving lung metastasis derived from MYC-driven mammary gland tumors. Using LC-MS, immunofluorescence (IF), and mass spectrometry imaging (DESI, OrbiSIMS), we observed several metabolic changes in metastatic lesions compared to metastasis-infiltrated lungs and normal healthy lungs. First, we detected an accumulation of lipids and fatty acids in the lung tissue surrounding metastatic lesions. IF staining for fatty acid synthase (FASN), a key enzyme in de novo lipogenesis, revealed its upregulation specifically in alveolar type II cells proximal to metastatic lesions. Second, we found increased levels of oxidized glutathione in metastasis-infiltrated lungs compared to normal lungs, along with higher levels of reduced glutathione in metastatic lesions relative to surrounding lung tissue. Finally, scRNA-seq data from normal and metastatic lungs allowed us to identify transcriptional differences (both general and specific to genes encoding metabolic enzymes) between cells in normal lung tissue and those in metastasis-infiltrated lungs.
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