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Updated: Mar 25, 2026

The Colon-26 Carcinoma Tumor-bearing Mouse as a Model for the Study of Cancer Cachexia
Published on: November 30, 2016
Ataxin-10 is part of a cachexokine cocktail triggering cardiac metabolic dysfunction in cancer cachexia
Michaela Schäfer1, Christian U Oeing2, Maria Rohm3
1Institute for Diabetes and Cancer (IDC), Helmholtz Center Munich, 85764 Neuherberg, Germany; Joint Heidelberg-IDC Translational Diabetes Program, Inner Medicine I, Heidelberg University Hospital, 69120 Heidelberg, Germany; DZHK (German Centre for Cardiovascular Research), Partner site Heidelberg/Mannheim, 69120 Heidelberg, Germany; German Center for Diabetes Research (DZD), 85764 Neuherberg, Germany.
Objectives:
Cancer cachexia affects the majority of tumor patients and significantly contributes to high mortality rates in these subjects. Despite its clinical importance, the identity of tumor-borne signals and their impact on specific peripheral organ systems, particularly the heart, remain mostly unknown.
Methods And Results:
By combining differential colon cancer cell secretome profiling with large-scale cardiomyocyte phenotyping, we identified a signature panel of seven "cachexokines", including Bridging integrator 1, Syntaxin 7, Multiple inositol-polyphosphate phosphatase 1, Glucosidase alpha acid, Chemokine ligand 2, Adamts like 4, and Ataxin-10, which were both sufficient and necessary to trigger cardiac atrophy and aberrant fatty acid metabolism in cardiomyocytes. As a prototypical example, engineered secretion of Ataxin-10 from non-cachexia-inducing cells was sufficient to induce cachexia phenotypes in cardiomyocytes, correlating with elevated Ataxin-10 serum levels in murine and human cancer cachexia models.
Conclusions:
As Ataxin-10 serum levels were also found to be elevated in human cachectic cancer patients, the identification of Ataxin-10 as part of a cachexokine cocktail now provides a rational approach towards personalized predictive, diagnostic and therapeutic measures in cancer cachexia.
Insights
Researchers identified seven "cachexokines," including Ataxin-10, that cause heart problems in cancer cachexia. Elevated Ataxin-10 levels in patients offer new diagnostic and therapeutic possibilities for this condition.
Area of Science:
- Oncology
- Cardiology
- Molecular Biology
Background:
- Cancer cachexia is a prevalent and fatal condition in cancer patients.
- The specific tumor-derived factors and their cardiac effects in cancer cachexia are largely unknown.
Purpose of the Study:
- To identify tumor-borne signals responsible for cardiac dysfunction in cancer cachexia.
- To investigate the impact of these signals on heart muscle cells (cardiomyocytes).
Main Methods:
- Differential secretome profiling of colon cancer cells.
- Large-scale cardiomyocyte phenotyping.
- Analysis of Ataxin-10 levels in murine and human cancer cachexia models.
Main Results:
- A panel of seven "cachexokines" was identified, including Ataxin-10.
- These cachexokines induce cardiac atrophy and alter fatty acid metabolism in cardiomyocytes.
- Engineered Ataxin-10 secretion mimicked cachexia phenotypes; elevated serum Ataxin-10 levels were observed in cachectic models.
Conclusions:
- Ataxin-10 is a key mediator of cardiac dysfunction in cancer cachexia.
- Elevated serum Ataxin-10 levels in human cachectic cancer patients were confirmed.
- Ataxin-10 identification enables personalized predictive, diagnostic, and therapeutic strategies for cancer cachexia.
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