Glycan targeting - sugar structures as therapeutic target structures
Glycan targeting utilises sugar structures on cells as a target for cancer therapy & immune medicine. Learn more about mechanisms of action, applications & scientific developments.
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Glycan targeting is an innovative strategy in medical research and therapy in which specific sugar structures (glycans) on cell surfaces are used as target structures for active substances, antibodies or diagnostic markers.
Glycans are complex carbohydrates that are covalently bound to proteins or lipids and play a crucial role in cell-cell communication, immune response, inflammation and tumour progression. Especially in cancer research and immunotherapy, the targeted targeting of glycan structures is becoming increasingly important. In glycan targeting, abnormal glycosylation patterns, which often occur on the surface of tumour cells, infected or chronically inflamed cells, are recognised and therapeutically addressed. These altered sugar structures - such as sialic acids, Lewis antigens or O-glycosylated mucins - can act as tumour-associated antigens (TAA).
Therapeutic approaches include the development of monoclonal antibodies, glycan-binding peptides, nanoparticles or CAR-T cells that are customised to these structures. The aim is to selectively recognise and eliminate pathological cells while protecting healthy tissue. Glycan targeting is also increasingly being used in the field of vaccinology and infection biology - e.g. for the targeted activation of immune cells, for improving antigen uptake or for blocking pathogenic interactions between bacteria/viruses and human cells. The greatest challenge lies in the high structural diversity and dynamic nature of glycan complexes, which makes precise target definition difficult. Nevertheless, glycan targeting opens up promising perspectives for personalised medicine, cancer treatment and immunomodulation.
Important features of glycan targeting:
- Targets specific sugar structures (glycans) on cell surfaces
- Use in cancer therapy, immunomodulation, infection biology
- Detection of abnormal glycosylation patterns on tumour cells
- Application in monoclonal antibodies, CAR-T cells, nanotechnology
- High specificity, with potential for personalised medicine
Literature references
- Pinho, S. S. & Reis, C. A. (2015). ""Glycosylation in cancer: mechanisms and clinical implications."" Nature Reviews Cancer.
- Hudak, J. E. et al. (2014). ""Glycocalyx engineering reveals a Siglec-based mechanism for NK cell immunoevasion."" Nature Chemical Biology.
- Rabinovich, G. A. et al. (2004). ""Functions of cell surface glycans in tumour progression and metastasis."" Cancer Cell.
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