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Immunotherapy targeting 4-1BB: mechanistic rationale, clinical results, and future strategies
Cariad Chester1, Miguel F Sanmamed2, Jun Wang2
1Institute for Immunity, Transplantation and Infection, Stanford University School of Medicine, Stanford, CA.
Abstract:
4-1BB (CD137, tumor necrosis factor receptor superfamily 9) is an inducible costimulatory receptor expressed on activated T and natural killer (NK) cells. 4-1BB ligation on T cells triggers a signaling cascade that results in upregulation of antiapoptotic molecules, cytokine secretion, and enhanced effector function. In dysfunctional T cells that have a decreased cytotoxic capacity, 4-1BB ligation demonstrates a potent ability to restore effector functions. On NK cells, 4-1BB signaling can increase antibody-dependent cell-mediated cytotoxicity. Agonistic monoclonal antibodies targeting 4-1BB have been developed to harness 4-1BB signaling for cancer immunotherapy. Preclinical results in a variety of induced and spontaneous tumor models suggest that targeting 4-1BB with agonist antibodies can lead to tumor clearance and durable antitumor immunity. Clinical trials of 2 agonist antibodies, urelumab and utomilumab, are ongoing. Despite initial signs of efficacy, clinical development of urelumab has been hampered by inflammatory liver toxicity at doses >1 mg/kg. Utomilumab has a superior safety profile, but is a less potent 4-1BB agonist relative to urelumab. Both antibodies have demonstrated promising results in patients with lymphoma and are being tested in combination therapy trials with other immunomodulatory agents. In an effort to optimally leverage 4-1BB-mediated immune activation, the next generation of 4-1BB targeting strategies attempts to decouple the observed antitumor efficacy from the on-target liver toxicity. Multiple therapeutics that attempt to restrict 4-1BB agonism to the tumor microenvironment and minimize systemic exposure have emerged. 4-1BB is a compelling target for cancer immunotherapy and future agents show great promise for achieving potent immune activation while avoiding limiting immune-related adverse events.
Insights
4-1BB agonists show promise in cancer immunotherapy by restoring T and NK cell functions. Newer strategies aim to improve efficacy while reducing liver toxicity for better cancer treatment.
Area of Science:
- Immunology
- Cancer Biology
- Pharmacology
Background:
- 4-1BB (CD137) is a costimulatory receptor on T and NK cells, crucial for immune responses.
- Ligation of 4-1BB enhances T cell effector functions and NK cell cytotoxicity.
- Dysfunctional T cells can regain cytotoxic capacity upon 4-1BB stimulation.
Purpose of the Study:
- To review the role of 4-1BB in cancer immunotherapy.
- To discuss the development and clinical trials of 4-1BB agonist antibodies (urelumab, utomilumab).
- To explore next-generation strategies for targeted 4-1BB agonism to improve safety and efficacy.
Main Methods:
- Review of preclinical and clinical data on 4-1BB agonist antibodies.
- Analysis of efficacy and toxicity profiles of urelumab and utomilumab.
- Discussion of novel therapeutic approaches to target 4-1BB within the tumor microenvironment.
Main Results:
- 4-1BB agonists demonstrate preclinical antitumor activity and clinical promise in lymphoma.
- Urelumab shows efficacy but is associated with liver toxicity; utomilumab has a better safety profile but lower potency.
- Emerging strategies focus on localizing 4-1BB agonism to the tumor microenvironment to mitigate systemic toxicity.
Conclusions:
- 4-1BB is a validated target for cancer immunotherapy.
- Next-generation 4-1BB therapeutics aim to enhance antitumor immunity while minimizing immune-related adverse events, particularly liver toxicity.
- Targeted delivery and modulated agonism represent promising avenues for optimizing 4-1BB-based cancer treatments.
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