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Updated: Sep 19, 2025

Author Spotlight: Advancements in Molecular Biomarker Testing for Non-Squamous Non-Small Cell Lung Cancer
Published on: September 8, 2023
The next generation of immunotherapies for lung cancers
Shen Zhao1, Hongyun Zhao2, Weiwei Yang1
1Department of Medical Oncology, Sun Yat-sen University Cancer Centre, State Key Laboratory of Oncology in South China, Collaborative Innovation Centre for Cancer Medicine, Guangdong Provincial Clinical Research Centre for Cancer, Guangzhou, China.
Abstract:
Immunotherapies, specifically immune-checkpoint inhibitors (ICIs) targeting PD-(L)1 or CTLA4, have revolutionized the treatment of lung cancer; however, many patients do not have a response to ICIs and most of those with an initial tumour response eventually have disease progression owing to acquired resistance. Over the past few years, numerous therapeutic strategies have been explored to address the problems of intrinsic and acquired resistance to ICIs. In 2024, regulatory approvals of the bispecific PD-1 × VEGF antibody ivonescimab for the treatment of non-small-cell lung cancer in China and the bispecific DLL3 × CD3 T cell engager tarlatamab for patients with small cell lung cancer in the USA provided clinical proof-of-concept for overcoming the challenge of ICI resistance using novel immunotherapeutic agents, thereby increasing enthusiasm for the exploration of next-generation immunotherapies for lung cancer. A large variety of immunotherapies with diverse targets and mechanisms of action are currently being tested in clinical trials involving patients with lung cancer. In this Review, we provide an overview of these emerging immunotherapies in clinical development for non-small-cell lung cancer and/or small cell lung cancer, including novel immune-checkpoint modulators, immune cell engagers, adoptive cell therapies and therapeutic cancer vaccines. We describe the designs of these agents and the mechanisms by which they might overcome resistance to the current generation of ICIs. We also discuss hurdles impeding the clinical translation of each immunotherapeutic modality and potential strategies to address these challenges, using representative examples of agents that have entered the later phases of clinical testing.
Insights
New immunotherapies are being developed to overcome resistance to current lung cancer treatments like immune-checkpoint inhibitors (ICIs). These novel agents, including bispecific antibodies and cell therapies, show promise in clinical trials for non-small cell and small cell lung cancer.
Area of Science:
- Oncology
- Immunology
- Pharmacology
Background:
- Immune-checkpoint inhibitors (ICIs) targeting PD-(L)1 or CTLA4 have transformed lung cancer therapy.
- Many patients exhibit intrinsic resistance or develop acquired resistance to ICIs, leading to disease progression.
- Recent approvals of novel agents like ivonescimab and tarlatamab demonstrate progress in overcoming ICI resistance.
Purpose of the Study:
- To review emerging immunotherapies in clinical development for non-small cell lung cancer (NSCLC) and small cell lung cancer (SCLC).
- To describe the mechanisms of action for novel immunotherapeutic agents designed to overcome ICI resistance.
- To discuss challenges and strategies for the clinical translation of these next-generation immunotherapies.
Main Methods:
- Comprehensive review of clinical trial data for emerging immunotherapies in lung cancer.
- Analysis of diverse therapeutic strategies including novel immune-checkpoint modulators, immune cell engagers, adoptive cell therapies, and cancer vaccines.
- Examination of agent designs and their potential to circumvent resistance to current ICIs.
Main Results:
- A wide array of novel immunotherapies with distinct targets and mechanisms are under investigation.
- Recent regulatory approvals provide proof-of-concept for overcoming ICI resistance.
- Several agents are advancing into later phases of clinical testing.
Conclusions:
- Next-generation immunotherapies hold significant promise for improving outcomes in lung cancer patients resistant to current treatments.
- Understanding the mechanisms of action and addressing clinical translation hurdles are crucial for successful development.
- Continued research and clinical trials are essential to realize the full potential of these innovative therapies.
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