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A Nonviral Approach to Generate Transient Chimeric Antigen Receptor T Cells Using mRNA for Cancer Immunotherapy
Published on: February 21, 2025
Recent advances and future perspectives on carbohydrate-based cancer vaccines and therapeutics
Charlotte Sorieul1, Francesco Papi1, Filippo Carboni1
1GSK, Via Fiorentina 1, 53100 Siena, Italy.
Abstract:
Carbohydrates are abundantly expressed on the surface of both eukaryotic and prokaryotic cells, often as post translational modifications of proteins. Glycoproteins are recognized by the immune system and can trigger both innate and humoral responses. This feature has been harnessed to generate vaccines against polysaccharide-encapsulated bacteria such as Streptococcus pneumoniae, Hemophilus influenzae type b and Neisseria meningitidis. In cancer, glycosylation plays a pivotal role in malignancy development and progression. Since glycans are specifically expressed on the surface of tumor cells, they have been targeted for the discovery of anticancer preventive and therapeutic treatments, such as vaccines and monoclonal antibodies. Despite the various efforts made over the last years, resulting in a series of clinical studies, attempts of vaccination with carbohydrate-based candidates have proven unsuccessful, primarily due to the immune tolerance often associated with these glycans. New strategies are thus deployed to enhance carbohydrate-based cancer vaccines. Moreover, lessons learned from glycan immunobiology paved the way to the development of new monoclonal antibodies specifically designed to recognize cancer-bound carbohydrates and induce tumor cell killing. Herein we provide an overview of the immunological principles behind the immune response towards glycans and glycoconjugates and the approaches exploited at both preclinical and clinical level to target cancer-associated glycans for the development of vaccines and therapeutic monoclonal antibodies. We also discuss gaps and opportunities to successfully advance glycan-directed cancer therapies, which could provide patients with innovative and effective treatments.
Insights
Cancer-associated carbohydrates (glycans) are promising targets for vaccines and therapies. New strategies are improving these treatments by overcoming immune tolerance and developing targeted monoclonal antibodies for cancer cell killing.
Area of Science:
- Immunology
- Glycobiology
- Cancer Research
Background:
- Cell surface carbohydrates (glycans) are crucial in cellular recognition and immune responses.
- Glycans play a significant role in cancer development and progression.
- Tumor-specific glycans are targets for anticancer therapies, including vaccines and monoclonal antibodies.
Purpose of the Study:
- To provide an overview of the immunological principles of glycan responses.
- To review current preclinical and clinical strategies for targeting cancer-associated glycans.
- To discuss challenges and opportunities in developing glycan-directed cancer therapies.
Main Methods:
- Review of immunological principles of glycan recognition and response.
- Analysis of preclinical and clinical approaches for cancer glycan targeting.
- Discussion of immune tolerance and strategies to overcome it.
Main Results:
- Glycans on bacterial surfaces are successfully targeted by vaccines.
- Cancer-associated glycans present challenges for vaccine development due to immune tolerance.
- New strategies are emerging to enhance carbohydrate-based cancer vaccines and develop therapeutic monoclonal antibodies.
Conclusions:
- Targeting cancer-associated glycans holds promise for innovative cancer treatments.
- Overcoming immune tolerance is key to successful glycan-based cancer vaccines.
- Development of therapeutic monoclonal antibodies offers a promising avenue for tumor cell killing.
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