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February 6, 2026Biomolecules1 citationsOpen Access

Advances in Next-Generation Immunotherapies for Ovarian Cancer: Mechanisms of Immune Evasion and Novel Therapeutic Targets

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ARAbidur RahmanMJMaroua JalouliMAMohammed Al-Zharani

Key Points

  • This review aims to synthesize advances in next-generation immunotherapies targeting ovarian cancer and discuss mechanisms of immune evasion.
  • Reviewed novel therapeutic approaches for ovarian cancer immunotherapy
  • Examined mechanisms of immune evasion in ovarian cancer
  • Critically analyzed combination therapies and immunomodulating strategies
  • Highlighted advancements in tumor microenvironment-targeted therapies
  • Discussed predictive biomarkers and precision medicine developments
  • Identified multiple immune evasion strategies that hinder effective treatment in ovarian cancer
  • Highlighted promising immune checkpoint blockade and combination therapies that enhance immune response
  • Presented novel therapeutic options including CAR-T cell therapies and oncolytic viruses
  • Showed that understanding tumor microenvironment can lead to better therapeutic outcomes
  • Emphasized the role of multi-omics in tailoring patient-specific immunotherapies

Abstract

Ovarian cancer (OC) is a particularly lethal gynecological malignancy with few treatment options due to its late-stage diagnosis, extensive genetic heterogeneity, and frequent development of resistance to existing therapies. Immunotherapy has revolutionized the management and clinical outcome of numerous solid tumors, but its clinical benefit for OC has been limited, in part due to an extremely immunosuppressive tumor microenvironment (TME) and diverse, overlapping immune evasion mechanisms. In this review, we present a comprehensive and timely synthesis of next-generation immunotherapeutic approaches for ovarian cancer, emphasizing strategies that overcome the immunosuppressive tumor microenvironment and improve clinical responsiveness. We describe the emerging molecular mechanisms of immune evasion in OC, including altered antigen presentation, inhibition of T-cell activation (e.g., via immunological checkpoints, metabolic reprogramming), polarization of tumor-associated macrophages (TAMs), and dysfunction of natural killer (NK) cells. We also critically examine several emerging therapeutic approaches, including combination immune checkpoint blockade (ICB), bispecific T-cell engagers (BiTEs), neoantigen-based vaccines, chimeric antigen receptor (CAR)-T- and CAR-NK-cell therapies, oncolytic viruses (OVs), and nanoparticle-mediated immunomodulation. In addition, we highlight recent advances in tumor microenvironment–targeted therapies for ovarian cancer, focusing on strategies that modulate non-lymphoid components such as cancer-associated fibroblasts (CAFs), hypoxia-driven signaling, and the PI3K/AKT/mTOR axis to enhance antitumor immune responsiveness. Finally, we discuss how predictive biomarkers, multi-omics systems, and patient-derived organoid models are accelerating the development and deployment of precision immunotherapies for OC. We would like to highlight the translational promise of next-generation immunotherapies and identify novel molecular targets that may be leveraged to achieve durable responses in OC.

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Cite This Study

Rahman et al. (2026) studied this question.

synapsesocial.com/papers/698585678f7c464f23008bf0https://doi.org/10.3390/biom16020246
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