Agonism of 4-1BB for immune therapy: a perspective on possibilities and complications
Shahram Salek-Ardakani1, Dirk M Zajonc2, Michael Croft2,3
1Yz Consulting, La Jolla, CA, United States.
Abstract:
Costimulatory receptors on immune cells represent attractive targets for immunotherapy given that these molecules can increase the frequency of individual protective immune cell populations and their longevity, as well as enhance various effector functions. 4-1BB, a member of the TNF receptor superfamily, also known as CD137 and TNFRSF9, is one such molecule that is inducible on several cell types, including T cells and NK cells. Preclinical studies in animal models have validated the notion that stimulating 4-1BB with agonist reagents or its natural ligand could be useful to augment conventional T cell and NK cell immunity to protect against tumor growth and against viral infection. Additionally, stimulating 4-1BB can enhance regulatory T cell function and might be useful in the right context for suppressing autoimmunity. Two human agonist antibodies to 4-1BB have been produced and tested in clinical trials for cancer, with variable results, leading to the production of a wealth of second-generation antibody constructs, including bi- and multi-specifics, with the hope of optimizing activity and selectivity. Here, we review the progress to date in agonism of 4-1BB, discuss the complications in targeting the immune system appropriately to elicit the desired activity, together with challenges in engineering agonists, and highlight the untapped potential of manipulating this molecule in infectious disease and autoimmunity.
Insights
Stimulating 4-1BB (CD137) enhances immune responses against tumors and infections. Further research into 4-1BB agonism is needed to optimize its use in cancer, autoimmunity, and infectious diseases.
Area of Science:
- Immunology
- Oncology
- Virology
- Autoimmunity
Background:
- Costimulatory receptors like 4-1BB (CD137) are key targets for immunotherapy.
- 4-1BB is expressed on T cells and NK cells, and its stimulation can boost immune cell function.
- Preclinical models show 4-1BB agonism enhances immunity against tumors and viral infections.
Purpose of the Study:
- To review progress in 4-1BB agonism for immunotherapy.
- To discuss challenges in engineering 4-1BB agonists and targeting the immune system.
- To highlight the potential of 4-1BB manipulation in infectious diseases and autoimmunity.
Main Methods:
- Review of preclinical and clinical studies on 4-1BB agonist antibodies.
- Analysis of challenges in developing selective and effective 4-1BB agonists.
- Exploration of 4-1BB's role in immune regulation.
Main Results:
- First-generation 4-1BB agonist antibodies showed variable clinical trial results.
- Development of second-generation bispecific and multispecific antibodies aims to improve efficacy and selectivity.
- 4-1BB stimulation has potential applications in both enhancing immunity and suppressing autoimmunity.
Conclusions:
- Optimizing 4-1BB agonism requires addressing engineering challenges and understanding immune context.
- Targeting 4-1BB offers potential for treating cancer, infectious diseases, and autoimmune disorders.
- Further research is crucial to fully exploit the therapeutic potential of 4-1BB manipulation.
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