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Identification of CSPG4 as a promising target for translational combinatorial approaches in osteosarcoma
Federica Riccardo1, Lidia Tarone2, Selina Iussich3
1University of Torino, Department of Molecular Biotechnology and Health Sciences, Molecular Biotechnology Centre, Via Nizza, 52, Torino, TO, 10126, Italy.
Background:
Osteosarcoma (OSA) is a highly metastatic pediatric bone tumor. Adjuvant chemotherapy and surgical resection represent standard treatments; however, the prognosis is still poor. Effective strategies are urgently needed. Chondroitin sulfate proteoglycan (CSPG)4 is a transmembrane proteoglycan with a low expression in normal tissues but high expression in several solid tumors, where it plays a central tumorigenic role. Therefore, it represents a promising therapeutic target. The high homology between human and canine CSPG4 and the recognized translational power of canine tumors as preclinical models for human malignancies prompted us to evaluate CSPG4 expression and the consequences of its immune-targeting for both human and canine OSA treatment.
Methods:
We analyzed CSPG4 overexpression in human and canine OSA samples and its significance for the survival of OSA patients. We exploited functional in vitro experiments to assess the antitumor potential of CSPG4 immune-targeting.
Results:
CSPG4 is overexpressed in OSA and has possible clinical implications as suggested by an evident correlation between CSPG4 overexpression and a shorter survival for both OSA-affected humans and dogs. The potential of CSPG4 immune-targeting for OSA treatment came from the ability of anti-CSPG4 monoclonal antibodies and sera, derived from human-CSPG4-DNA vaccinated canine patients, to significantly inhibit human and canine CSPG4-positive OSA cell proliferation, migration, and osteospheres generation. Moreover, CSPG4 immune-targeting has been shown to potentiate the effect of doxorubicin.
Conclusions:
Overall, these results provide the rationale to investigate the CSPG4 immune-targeting as a promising weapon for the treatment of CSPG4-positive OSA canine patients, to be successfully translated to a human setting.
Insights
Chondroitin sulfate proteoglycan (CSPG)4 is overexpressed in osteosarcoma (OSA), a deadly pediatric bone cancer. Targeting CSPG4 with immunotherapy shows promise for treating both canine and human OSA, potentially improving patient survival.
Area of Science:
- Oncology
- Immunotherapy
- Veterinary Medicine
Background:
- Osteosarcoma (OSA) is a highly metastatic pediatric bone tumor with a poor prognosis despite standard treatments.
- Chondroitin sulfate proteoglycan (CSPG)4 is overexpressed in several solid tumors, including OSA, making it a potential therapeutic target.
- Canine OSA models offer translational value for human OSA research due to high CSPG4 homology.
Purpose of the Study:
- To evaluate CSPG4 expression in human and canine OSA samples.
- To assess the antitumor potential of targeting CSPG4 through immunotherapy in OSA models.
- To investigate the translational application of CSPG4 immune-targeting for both canine and human OSA treatment.
Main Methods:
- Analysis of CSPG4 overexpression in human and canine OSA patient samples.
- In vitro functional experiments to assess the efficacy of CSPG4 immune-targeting.
- Evaluation of anti-CSPG4 antibodies and sera from vaccinated dogs against OSA cells.
Main Results:
- CSPG4 is overexpressed in OSA, correlating with shorter survival in both humans and dogs.
- Anti-CSPG4 antibodies and sera significantly inhibited proliferation, migration, and osteosphere formation of human and canine OSA cells.
- CSPG4 immune-targeting demonstrated synergistic effects when combined with doxorubicin.
Conclusions:
- CSPG4 immune-targeting is a promising therapeutic strategy for CSPG4-positive OSA.
- The study provides a rationale for investigating CSPG4 immune-targeting in canine OSA patients.
- Successful translation to human OSA treatment is anticipated based on these findings.
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