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Engineering HSV-1 for oncolytic therapy: From molecular entry mechanisms to retargeting strategies
Yufang Zou1, Juan Tao1, Yingzheng Gao1
1Key Laboratory of the Second Affiliated Hospital of Kunming Medical College, Kunming, Yunnan 650101, China.
Abstract:
Oncolytic viruses (OVs) represent a cutting-edge approach to cancer immunotherapy, characterized by their ability to selectively infect and eliminate tumor cells while sparing healthy tissues. Among the diverse OVs, type 1 herpes simplex virus (HSV-1) stands out due to its robust oncolytic activity, genetic malleability, broad cell tropism, and well-documented clinical safety. Advances in genetic engineering have further amplified the therapeutic efficacy of HSV-1 by enhancing tumor specificity, replication efficiency, and immunogenicity. Clinically significant HSV-1-based oncolytic viruses, such as T-VEC and G47Δ, have gained regulatory approvals for treating melanoma and malignant glioma, respectively, highlighting their transformative potential in cancer therapy. The attenuation strategies employed in most oncolytic HSV-1 (oHSV-1) strains, while ensuring safety, often reduce viral replication and cytotoxicity. To address this limitation, retargeting strategies focusing on HSV-1 glycoproteins (gD, gH/gL, and gB) have been developed. These modifications aim to abolish canonical receptor interactions and achieve tumor-specific targeting through ligand-receptor binding. Recent breakthroughs in understanding HSV entry mechanisms have enabled the creation of fully retargeted HSV vectors with enhanced specificity and efficacy. This review explores the molecular mechanisms underlying HSV glycoprotein-mediated cell entry, examines recent advances in receptor-retargeted oHSV-1 engineering, and discusses the challenges and future directions in the development of oncolytic HSV-based therapies.
Insights
Oncolytic herpes simplex virus type 1 (HSV-1) offers a promising cancer immunotherapy. Engineering HSV-1 glycoproteins improves tumor targeting and efficacy for advanced cancer treatments.
Area of Science:
- Oncolytic virotherapy
- Cancer immunotherapy
- Viral vector engineering
Background:
- Oncolytic viruses (OVs) selectively destroy cancer cells.
- Herpes simplex virus type 1 (HSV-1) is a potent OV candidate due to its safety and genetic adaptability.
- Existing HSV-1 OVs (oHSV-1) show promise but can be limited by safety-driven attenuation.
Purpose of the Study:
- To review the molecular mechanisms of HSV-1 entry.
- To examine advances in engineering oHSV-1 for tumor-specific targeting.
- To discuss future directions for HSV-1-based oncolytic therapies.
Main Methods:
- Exploration of HSV-1 glycoprotein functions in cell entry.
- Analysis of genetic engineering strategies for oHSV-1 retargeting.
- Review of clinical advancements and challenges in oHSV-1 development.
Main Results:
- HSV-1 glycoproteins (gD, gH/gL, gB) mediate viral entry into cells.
- Retargeting these glycoproteins enhances tumor specificity and efficacy.
- Approved oHSV-1 therapies demonstrate clinical potential.
Conclusions:
- Modifying HSV-1 glycoproteins is key to improving oncolytic virus therapy.
- Engineered HSV-1 vectors offer enhanced specificity and efficacy for cancer treatment.
- Further research into HSV-1 entry mechanisms will drive future therapeutic development.
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