Related Experiment Video
Updated: Aug 27, 2025

Dual Effects of Melanoma Cell-derived Factors on Bone Marrow Adipocytes Differentiation
Published on: August 23, 2018
Obesity Is Associated with Altered Tumor Metabolism in Metastatic Melanoma
Andrew W Hahn1, Ashley V Menk2, Dayana B Rivadeneira2
1Division of Cancer Medicine, University of Texas MD Anderson Cancer Center, Houston, Texas.
Purpose:
Overweight/obese (OW/OB) patients with metastatic melanoma unexpectedly have improved outcomes with immune checkpoint inhibitors (ICI) and BRAF-targeted therapies. The mechanism(s) underlying this association remain unclear, thus we assessed the integrated molecular, metabolic, and immune profile of tumors, as well as gut microbiome features, for associations with patient body mass index (BMI).
Experimental Design:
Associations between BMI [normal (NL < 25) or OW/OB (BMI ≥ 25)] and tumor or microbiome characteristics were examined in specimens from 782 patients with metastatic melanoma across 7 cohorts. DNA associations were evaluated in The Cancer Genome Atlas cohort. RNA sequencing from 4 cohorts (n = 357) was batch corrected and gene set enrichment analysis (GSEA) by BMI category was performed. Metabolic profiling was conducted in a subset of patients (x = 36) by LC/MS, and in flow-sorted melanoma tumor cells (x = 37) and patient-derived melanoma cell lines (x = 17) using the Seahorse XF assay. Gut microbiome features were examined in an independent cohort (n = 371).
Results:
DNA mutations and copy number variations were not associated with BMI. GSEA demonstrated that tumors from OW/OB patients were metabolically quiescent, with downregulation of oxidative phosphorylation and multiple other metabolic pathways. Direct metabolite analysis and functional metabolic profiling confirmed decreased central carbon metabolism in OW/OB metastatic melanoma tumors and patient-derived cell lines. The overall structure, diversity, and taxonomy of the fecal microbiome did not differ by BMI.
Conclusions:
These findings suggest that the host metabolic phenotype influences melanoma metabolism and provide insight into the improved outcomes observed in OW/OB patients with metastatic melanoma treated with ICIs and targeted therapies. See related commentary by Smalley, p. 5.
Insights
Overweight/obese patients with metastatic melanoma have tumors with reduced metabolic activity. This metabolic phenotype may explain improved outcomes with immunotherapy and targeted therapies.
Area of Science:
- Oncology
- Metabolism
- Immunotherapy
Background:
- Overweight/obese (OW/OB) patients with metastatic melanoma exhibit improved responses to immune checkpoint inhibitors (ICI) and BRAF-targeted therapies, but the underlying mechanisms are unknown.
- This study investigated the molecular, metabolic, and immune profiles of tumors, alongside gut microbiome features, to understand the association with patient body mass index (BMI).
Discussion:
- Tumors from OW/OB patients showed a "metabolically quiescent" phenotype, characterized by downregulated oxidative phosphorylation and other metabolic pathways.
- Metabolite analysis and functional assays confirmed reduced central carbon metabolism in OW/OB metastatic melanoma tumors and cell lines.
- No significant differences in gut microbiome structure, diversity, or taxonomy were observed based on BMI.
Key Insights:
- Host metabolic phenotype significantly influences melanoma tumor metabolism.
- OW/OB status is associated with decreased metabolic activity in metastatic melanoma.
- Metabolic reprogramming in tumors may contribute to enhanced efficacy of ICI and targeted therapies in OW/OB patients.
Outlook:
- Further research into host metabolic factors could reveal novel therapeutic strategies for metastatic melanoma.
- Understanding the interplay between host metabolism and tumor behavior may optimize treatment selection for melanoma patients.
- Investigating metabolic interventions could potentially improve outcomes for normal BMI melanoma patients.
Related Concept Videos
Adaptive Mechanisms in Cancer Cells
Some of the advantages that cancer cells have on normal cells include - enhanced ability to divide without terminally differentiating, induce new blood vessel formation,...
Obesity
The Tumor Microenvironment
mTOR Signaling and Cancer Progression
The mTOR pathway or the...

