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Published on: August 31, 2022
Reduced lung cancer burden by selective immunomodulators elicits improvements in muscle proteolysis and strength in
Anna Salazar-Degracia1, Paula Granado-Martínez1, Aïna Millán-Sánchez1
1Pulmonology Department-Muscle Wasting and Cachexia in Chronic Respiratory Diseases and Lung Cancer, Health and Experimental Sciences Department (CEXS), MIM-Hospital del Mar, Parc de Salut Mar, Universitat Pompeu Fabra, Barcelona, Spain.
Abstract:
Identification of to what extent tumor burden influences muscle mass independently of specific treatments for cancer-cachexia remains to be elucidated. We hypothesized that reduced tumor burden by selective treatment of tumor with immunomodulators may exert beneficial effects on muscle wasting and function in mice. Body and muscle weight, grip strength, physical activity, muscle morphometry, apoptotic nuclei, troponin-I systemic levels, interleukin-6, proteolytic markers, and tyrosine release, and apoptosis markers were determined in diaphragm and gastrocnemius muscles of lung cancer (LP07 adenocarcinoma cells) mice (BALB/c) treated with monoclonal antibodies (mAbs), against immune check-points and pathways (CD-137, cytotoxic T-lymphocyte associated protein-4, programed cell death-1, and CD-19; N = 10/group). Nontreated lung cancer cachectic mice were the controls. T and B cell numbers and macrophages were counted in tumors of both mouse groups. Compared to nontreated cachectic mice, in the mAbs-treated animals, T cells increased, no differences in B cells or macrophages, the variables final body weight, body weight and grip strength gains significantly improved. In diaphragm and gastrocnemius of mAbs-treated cachectic mice, number of apoptotic nuclei, tyrosine release, proteolysis, and apoptosis markers significantly decreased compared to nontreated cachectic mice. Systemic levels of troponin-I significantly decreased in treated cachectic mice compared to nontreated animals. We conclude that reduced tumor burden as a result of selective treatment of the lung cancer cells with immunomodulators elicits per se beneficial effects on muscle mass loss through attenuation of several biological mechanisms that lead to increased protein breakdown and apoptosis, which translated into significant improvements in limb muscle strength but not in physical activity parameters.
Insights
Reducing tumor burden with immunomodulator monoclonal antibodies (mAbs) improved muscle mass and strength in cancer cachexia mice. This treatment attenuated muscle protein breakdown and apoptosis, benefiting limb muscle function.
Area of Science:
- Oncology
- Immunology
- Muscle Physiology
Background:
- Cancer cachexia involves muscle wasting, impacting patient prognosis.
- The independent effect of tumor burden on muscle mass requires further investigation.
- Immunomodulatory therapies offer a potential strategy to mitigate cancer cachexia.
Purpose of the Study:
- To determine if reducing tumor burden with immunomodulators benefits muscle mass and function in cancer cachexia.
- To investigate the molecular mechanisms underlying treatment-induced muscle protection.
Main Methods:
- Lung cancer cachexia mouse model (LP07 adenocarcinoma cells) treated with monoclonal antibodies (mAbs) targeting immune checkpoints (CD-137, CTLA-4, PD-1) and CD-19.
- Assessment of body and muscle weight, grip strength, physical activity, muscle morphometry, apoptosis markers, and systemic inflammatory markers.
- Analysis of T cells, B cells, and macrophages within tumors.
Main Results:
- mAbs treatment significantly improved body weight, muscle weight, and grip strength compared to non-treated controls.
- Reduced apoptosis, proteolysis, and tyrosine release were observed in the diaphragm and gastrocnemius muscles of treated mice.
- Systemic troponin-I levels decreased significantly in the treated group, indicating reduced muscle damage.
Conclusions:
- Selective reduction of tumor burden using immunomodulatory mAbs exerts beneficial effects on muscle mass and strength in cancer cachexia.
- The observed benefits are mediated by the attenuation of protein breakdown and apoptosis pathways within muscle tissue.
- While limb muscle strength improved, physical activity parameters did not show significant changes.
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