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Updated: Feb 5, 2026

The Colon-26 Carcinoma Tumor-bearing Mouse as a Model for the Study of Cancer Cachexia
Published on: November 30, 2016
The TLR7/8/9 Antagonist IMO-8503 Inhibits Cancer-Induced Cachexia
Federica Calore1, Priya Londhe1, Paolo Fadda1
1Department of Cancer Biology and Genetics and Comprehensive Cancer Center, The Ohio State University, Columbus, Ohio.
Abstract:
: Muscle wasting is a feature of the cachexia syndrome, which contributes significantly to the mortality of patients with cancer. We have previously demonstrated that miR-21 is secreted through extracellular vesicles (EV) by lung and pancreatic cancer cells and promotes JNK-dependent cell death through its binding to the TLR7 receptor in murine myoblasts. Here, we evaluate the ability of IMO-8503, a TLR7, 8, and 9 antagonist, to inhibit cancer-induced cachexia. Using EVs isolated from lung and pancreatic cancer cells and from patient plasma samples, we demonstrate that IMO-8503 inhibits cell death induced by circulating miRNAs with no significant toxicity. Intraperitoneal administration of the antagonist in a murine model for Lewis lung carcinoma (LLC-induced cachexia) strongly impaired several cachexia-related features, such as the expression of Pax7 as well as caspase-3 and PARP cleavage in skeletal muscles, and significantly prevented the loss of lean mass in tumor-bearing mice. IMO-8503 also impaired circulating miRNA-induced cell death in human primary myoblasts. Taken together, our findings strongly indicate that IMO-8503 serves as a potential therapy for the treatment of cancer cachexia. SIGNIFICANCE: Cancer-associated cachexia is a significant problem for patients with cancer that remain poorly understood, understudied, and inadequately treated; these findings report a potential new therapeutic for the treatment of TLR7-mediated cancer cachexia.
Insights
A novel drug, IMO-8503, effectively combats cancer cachexia by blocking specific microRNAs (miRNAs) that cause muscle wasting. This therapeutic shows promise in preventing lean mass loss and muscle damage in preclinical models.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Cancer cachexia, characterized by muscle wasting, significantly increases mortality in cancer patients.
- MicroRNAs (miRNAs) secreted via extracellular vesicles (EVs) from cancer cells promote muscle cell death through Toll-like receptor 7 (TLR7).
Purpose of the Study:
- To evaluate the efficacy of IMO-8503, a TLR7, 8, and 9 antagonist, in inhibiting cancer-induced cachexia.
- To assess the safety and therapeutic potential of IMO-8503 against circulating miRNA-induced muscle atrophy.
Main Methods:
- Utilized EVs from lung and pancreatic cancer cells and patient plasma.
- Tested IMO-8503's ability to inhibit cell death induced by circulating miRNAs in murine myoblasts and human primary myoblasts.
- Administered IMO-8503 intraperitoneally in a murine model of Lewis lung carcinoma (LLC)-induced cachexia.
Main Results:
- IMO-8503 inhibited cell death induced by circulating miRNAs without significant toxicity.
- In LLC-induced cachexia model, IMO-8503 reduced muscle markers of cell death (caspase-3, PARP cleavage) and preserved Pax7 expression.
- The antagonist significantly prevented lean mass loss in tumor-bearing mice and inhibited miRNA-induced cell death in human myoblasts.
Conclusions:
- IMO-8503 demonstrates significant therapeutic potential for treating cancer cachexia.
- Targeting TLR7-mediated pathways with IMO-8503 offers a novel strategy against cancer-associated muscle wasting.
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