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Implantation and Monitoring by PET/CT of an Orthotopic Model of Human Pleural Mesothelioma in Athymic Mice
Published on: December 21, 2019
Inflammation as a chemoprevention target in asbestos-induced malignant mesothelioma
Yuwaraj Kadariya1, Eleonora Sementino1, Ujjawal Shrestha1
1Cancer Signaling and Microenvironment Program, Fox Chase Cancer Center, Philadelphia, PA, 19111, USA.
Abstract:
Malignant mesothelioma (MM) is an incurable cancer of the serosal lining that is often caused by exposure to asbestos. Therefore, novel agents for the prevention and treatment of this disease are urgently needed. Asbestos induces the release of pro-inflammatory cytokines such as IL-1β and IL-6, which play a role in MM development. IL-6 is a component of the JAK-STAT3 pathway that contributes to inflammation-associated tumorigenesis. Glycoprotein 130 (gp130), the signal transducer of this signaling axis, is an attractive drug target because of its role in promoting neoplasia via the activation of downstream STAT3 signaling. The anticancer drug, SC144, inhibits the interaction of gp130 with the IL-6 receptor (IL6R), effectively blunting signaling from this inflammatory axis. To test whether the inflammation-related release of IL-6 plays a role in the formation of MM, we evaluated the ability of SC144 to inhibit asbestos-induced carcinogenesis in a mouse model. The ability of sulindac and anakinra, an IL6R antagonist/positive control, to inhibit MM formation in this model was tested in parallel. Asbestos-exposed Nf2+/-;Cdkn2a+/- mice treated with SC144, sulindac or anakinra showed significantly prolonged survival compared to asbestos-exposed vehicle-treated mice. STAT3 activity was markedly decreased in MM specimens from SC144-treated mice. Furthermore, SC144 inhibited STAT3 activation by IL-6 in cultured normal mesothelial cells, and in vitro treatment of MM cells with SC144 markedly decreased the expression of STAT3 target genes. The emerging availability of newer, more potent SC144 analogs showing improved pharmacokinetic properties holds promise for future trials, benefitting individuals at high risk of this disease.
Insights
The anticancer drug SC144 significantly prolonged survival in a mouse model of asbestos-induced malignant mesothelioma (MM). SC144 works by inhibiting gp130 signaling, a key pathway in inflammation-driven cancer development.
Area of Science:
- Oncology
- Immunology
- Drug Discovery
Background:
- Malignant mesothelioma (MM) is an aggressive cancer linked to asbestos exposure.
- Inflammatory cytokines like IL-6, mediated by the JAK-STAT3 pathway, contribute to MM development.
- Glycoprotein 130 (gp130) is a crucial mediator of this inflammatory signaling axis and a potential drug target.
Purpose of the Study:
- To investigate the role of IL-6 signaling in asbestos-induced MM.
- To evaluate the efficacy of SC144, an inhibitor of gp130-IL-6 receptor interaction, in preventing MM.
- To assess the potential of SC144 and other agents in a preclinical mouse model.
Main Methods:
- Utilized a mouse model (Nf2+/-;Cdkn2a+/-) exposed to asbestos.
- Treated mice with SC144, sulindac, or anakinra (IL6R antagonist) and compared survival to vehicle controls.
- Assessed STAT3 pathway activity in tumor tissues and cultured cells.
Main Results:
- SC144, sulindac, and anakinra significantly extended survival in asbestos-exposed mice.
- SC144 treatment markedly reduced STAT3 activity in MM specimens.
- SC144 inhibited IL-6-induced STAT3 activation in mesothelial cells and decreased STAT3 target gene expression in MM cells.
Conclusions:
- Inhibition of the gp130-mediated inflammatory axis, particularly with SC144, shows promise for preventing asbestos-induced malignant mesothelioma.
- SC144 effectively blunts STAT3 signaling, a key driver of MM.
- Further development of SC144 analogs could lead to new therapeutic strategies for high-risk individuals.
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