The Osteosarcoma Tumor Microenvironment: Supportive of Tumor Progression, Hostile to Immunity, but Therapeutically Targetable

Osteosarcoma (OSA) remains the most common primary malignant bone tumor of children and young adults, with limited survival improvements in patients with relapsed or metastatic disease despite multimodal chemotherapeutic treatment. Beyond the intrinsic heterogeneity and malignancy of tumor cells, OSA progression and therapeutic resistance are strongly influenced by the specialized bone tumor microenvironment (TME). Interactions among tumor, immune and stromal cells generate a complex ecosystem characterized by immune suppression, hypoxia and metabolic adaptation, representing a major challenge for effective (immune) therapeutic approaches. In this review, we discuss how the OSA microenvironment shapes tumor evolution and therapeutic response, with particular emphasis on the mechanisms that limit effective immune-mediated tumor control. We further examine the rationale for combining tumor-directed and microenvironment-directed immunotherapies. Within this context, B7-H3/CD276 represents a relevant example of a multifunctional molecule at the interface between tumor biology and immune regulation. B7-H3 is associated with aggressive tumor features and therapy resistance, while its immunoregulatory activities contribute to the establishment of an immune-restrictive TME. Consequently, B7-H3-targeted therapies may exert complementary mechanisms of action, either by directly eliminating B7-H3-expressing tumor cells or by modulating the TME to overcome immunosuppressive barriers. This dual activity provides rationale for combination strategies integrating B7-H3-targeting with antigen-directed immunotherapies, including those targeting the novel OSA-associated antigen, chondroitin sulfate proteoglycan 4, where effective antitumor immunity may require simultaneous modulation of the local immune context. We then discuss how advanced preclinical models, comparative oncology, and emerging biomarker-guided approaches may accelerate the clinical translation of more effective immunotherapeutic strategies for OSA.

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Publication Details

Journal
Cancers
Published
2026-10-08
DOI
https://doi.org/10.3390/cancers18193239
Primary Topic
Sarcoma Diagnosis and Treatment
Type
article
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article

The Osteosarcoma Tumor Microenvironment: Supportive of Tumor Progression, Hostile to Immunity, but Therapeutically Targetable

Federica Cavallo, Irene Fiore Merighi, Emanuela Maria Morello, Davide Giacobino et al.
Cancers
Sarcoma Diagnosis and Treatment
article

The Osteosarcoma Tumor Microenvironment: Supportive of Tumor Progression, Hostile to Immunity, but Therapeutically Targetable

Federica Cavallo, Irene Fiore Merighi, Emanuela Maria Morello, Davide Giacobino, Elisa Tirtei, Federica Riccardo, Lidia Tarone
article en

Abstract

Osteosarcoma (OSA) remains the most common primary malignant bone tumor of children and young adults, with limited survival improvements in patients with relapsed or metastatic disease despite multimodal chemotherapeutic treatment. Beyond the intrinsic heterogeneity and malignancy of tumor cells, OSA progression and therapeutic resistance are strongly influenced by the specialized bone tumor microenvironment (TME). Interactions among tumor, immune and stromal cells generate a complex ecosystem characterized by immune suppression, hypoxia and metabolic adaptation, representing a major challenge for effective (immune) therapeutic approaches. In this review, we discuss how the OSA microenvironment shapes tumor evolution and therapeutic response, with particular emphasis on the mechanisms that limit effective immune-mediated tumor control. We further examine the rationale for combining tumor-directed and microenvironment-directed immunotherapies. Within this context, B7-H3/CD276 represents a relevant example of a multifunctional molecule at the interface between tumor biology and immune regulation. B7-H3 is associated with aggressive tumor features and therapy resistance, while its immunoregulatory activities contribute to the establishment of an immune-restrictive TME. Consequently, B7-H3-targeted therapies may exert complementary mechanisms of action, either by directly eliminating B7-H3-expressing tumor cells or by modulating the TME to overcome immunosuppressive barriers. This dual activity provides rationale for combination strategies integrating B7-H3-targeting with antigen-directed immunotherapies, including those targeting the novel OSA-associated antigen, chondroitin sulfate proteoglycan 4, where effective antitumor immunity may require simultaneous modulation of the local immune context. We then discuss how advanced preclinical models, comparative oncology, and emerging biomarker-guided approaches may accelerate the clinical translation of more effective immunotherapeutic strategies for OSA.

CancersVol. 18(19)
Ospedale Regina Margherita (IT), University of Turin (IT)
Openalex Percentile: Top 12%
Sarcoma Diagnosis and Treatment
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