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Published on: December 19, 2020
Entirely Carbohydrate-Based Vaccines: An Emerging Field for Specific and Selective Immune Responses
Sharmeen Nishat1, Peter R Andreana2
1Department of Chemistry and Biochemistry, School of Green Chemistry and Engineering, University of Toledo, Toledo, OH 43606, USA. Sharmeen.Nishat@utoledo.edu.
Abstract:
Carbohydrates are regarded as promising targets for vaccine development against infectious disease because cell surface glycans on many infectious agents are attributed to playing an important role in pathogenesis. In addition, oncogenic transformation of normal cells, in many cases, is associated with aberrant glycosylation of the cell surface glycan generating tumor associated carbohydrate antigens (TACAs). Technological advances in glycobiology have added a new dimension to immunotherapy when considering carbohydrates as key targets in developing safe and effective vaccines to combat cancer, bacterial infections, viral infections, etc. Many consider effective vaccines induce T-cell dependent immunity with satisfactory levels of immunological memory that preclude recurrence. Unfortunately, carbohydrates alone are poorly immunogenic as they do not bind strongly to the MHCII complex and thus fail to elicit T-cell immunity. To increase immunogenicity, carbohydrates have been conjugated to carrier proteins, which sometimes can impede carbohydrate specific immunity as peptide-based immune responses can negate antibodies directed at the targeted carbohydrate antigens. To overcome many challenges in using carbohydrate-based vaccine design and development approaches targeting cancer and other diseases, zwitterionic polysaccharides (ZPSs), isolated from the capsule of commensal anaerobic bacteria, will be discussed as promising carriers of carbohydrate antigens to achieve desired immunological responses.
Insights
Carbohydrate antigens are key targets for vaccines against cancer and infections. Zwitterionic polysaccharides (ZPSs) show promise as carriers to enhance immune responses, overcoming limitations of traditional carbohydrate vaccines.
Area of Science:
- Glycobiology
- Immunology
- Vaccine Development
Background:
- Cell surface glycans are crucial in infectious diseases and cancer pathogenesis.
- Tumor-associated carbohydrate antigens (TACAs) arise from aberrant glycosylation in cancer.
- Carbohydrates are promising vaccine targets but are poorly immunogenic alone.
Purpose of the Study:
- To explore zwitterionic polysaccharides (ZPSs) as novel carriers for carbohydrate antigens.
- To overcome challenges in developing effective carbohydrate-based vaccines.
- To achieve robust T-cell dependent immunity and immunological memory.
Main Methods:
- Isolation of ZPSs from commensal anaerobic bacteria.
- Conjugation of carbohydrate antigens to ZPS carriers.
- Evaluation of ZPS-carbohydrate conjugates for immunogenicity.
Main Results:
- Traditional carbohydrate vaccines often fail to elicit T-cell immunity.
- Carrier proteins can sometimes interfere with carbohydrate-specific antibody responses.
- ZPSs present a potential solution to enhance immunogenicity of carbohydrate antigens.
Conclusions:
- Zwitterionic polysaccharides (ZPSs) are promising carriers for carbohydrate antigens in vaccine development.
- ZPSs can help overcome the poor immunogenicity of carbohydrates.
- This approach may lead to more effective vaccines against cancer and infectious diseases.
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