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The evolving landscape of 'next-generation' immune checkpoint inhibitors: A review
Luca Mazzarella1, Bruno Achutti Duso1, Dario Trapani2
1New Drugs and Early Drug Development for Innovative Therapies Division, IEO, European Institute of Oncology IRCCS, Milan, Italy.
Abstract:
'First-generation' immune checkpoint inhibitors targeting Cytotoxic T-Lymphocyte Antigen 4 (CTLA4) and Programmed death-ligand 1 (PD(L)1) have undoubtedly revolutionised the treatment of multiple cancers in the advanced setting. Targeting signalling pathways other than core inhibitory modules may strongly impact the outcome of the antitumour immune response. Drugs targeting these pathways ('next-generation' immune modulators, NGIMs) constitute a major frontier in translational research and have generated unprecedented scientific and financial investment. Here, we systematically reviewed published literature, abstracts from major cancer conferences and pharma pipelines to identify NGIMs that have reached clinical development. We identified 107 molecules targeting 16 pathways, which we classified into 6 groups according to function (inhibitory vs stimulatory) and cell of predominant expression (lymphoid, non-lymphoid and natural killer). We identified all registered past and ongoing clinical trials (n = 428). We summarise the preclinical rationale for these targets, extracting translationally relevant information, and review published and preliminary clinical results. Some targets like indoleamine-2,3-dioxygenase 1, lymphocyte activation gene-3 and IL15 have experienced exceptional growth of interest, measured in terms of activated studies and expected patient enrolment over time. We conclude that in this vast and rapidly changing drug development landscape, novel trial designs and better biomarker identification are necessary to optimise resource allocation.
Insights
Next-generation immune modulators (NGIMs) are advancing cancer treatment beyond current checkpoint inhibitors. This review identifies 107 NGIMs in clinical development, highlighting the need for optimized trial designs and biomarkers.
Area of Science:
- Oncology
- Immunology
- Translational Research
Background:
- First-generation immune checkpoint inhibitors (Cytotoxic T-Lymphocyte Antigen 4 (CTLA4) and Programmed death-ligand 1 (PD(L)1)) have transformed advanced cancer treatment.
- Targeting novel signaling pathways beyond core inhibitory modules offers a new frontier for enhancing anti-tumor immune responses.
Purpose of the Study:
- To systematically review next-generation immune modulators (NGIMs) that have entered clinical development.
- To classify identified NGIMs by function and cell expression, and to analyze their preclinical rationale and clinical progress.
Main Methods:
- Systematic literature review, including conference abstracts and pharmaceutical pipelines.
- Identification and classification of 107 NGIM molecules targeting 16 distinct pathways.
- Analysis of 428 registered clinical trials associated with these NGIMs.
Main Results:
- 107 NGIMs targeting 16 pathways were identified and categorized by function and cell type.
- Significant growth in interest and clinical activity observed for targets such as indoleamine-2,3-dioxygenase 1, lymphocyte activation gene-3, and IL15.
- A substantial number of clinical trials (n=428) are investigating these novel agents.
Conclusions:
- The landscape of immune-oncology drug development is rapidly expanding with numerous NGIMs.
- Optimizing resource allocation requires innovative clinical trial designs and improved biomarker strategies.
- Further research is essential to fully leverage the potential of NGIMs in cancer therapy.