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January 14, 2026Diagnostics7 citationsOpen Access

Lung Cancer in Never-Smokers: Risk Factors, Driver Mutations, and Therapeutic Advances

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PCPo-Ming ChenYHYu‐Han HuangCLChia-Ying Li

Key Points

  • This review examines lung cancer in never-smokers, focusing on risk factors and therapeutic advances.
  • Narrative review of studies on lung cancer risk factors in non-smokers.
  • Identification of driver mutations in various lung cancer histological subtypes.
  • Search for phase III trials and studies on targeted therapies from 2016 to 2025.
  • Environmental carcinogens like cooking oil fumes and radon are linked to lung cancer in never-smokers.
  • Mutations such as EGFR and TP53 highlight differences between never-smokers and smokers.
  • Targeted therapies have improved survival rates and quality of life.

Abstract

Background and Objectives: Lung cancer in never-smokers (LCINS) has become a major global health concern, ranking as the fifth leading cause of cancer-related mortality. Unlike smoking-related lung cancer, LCINS arises from complex interactions between environmental carcinogens and distinct genomic alterations. This review summarizes current evidence on environmental risks, molecular features, and therapeutic progress shaping lung cancer management. Methods: A narrative review was conducted to examine risk factors for lung cancer in non-smokers. Studies reporting driver mutations in never-smokers and smokers were identified across major lung cancer histological subtypes, including small-cell lung cancer (SCLC), lung adenocarcinoma (LUAD), squamous cell carcinoma (SCC), and large-cell carcinoma (LCC). In addition, PubMed was searched for phase III trials and studies on targeted therapies related to driver mutations published between 2016 and 2025. Results: Environmental factors such as cooking oil fumes, radon, asbestos, arsenic, and fine particulate matter (PM2.5) are strongly associated with LCINS through oxidative stress, DNA damage, and chronic inflammation. EGFR, PIK3CA, OS9, MET, and STK11 mutations are characteristic of never-smokers, in contrast to TP53 mutations, which are more common in smokers. Recent advances in targeted therapy and immunotherapy have improved survival and quality of life, emphasizing the importance of molecular profiling for treatment selection. Conclusions: LCINS represents a distinct clinical and molecular entity shaped by complex interactions between environmental exposures and genetic susceptibility. Genetic alterations promote tumor immune evasion, facilitating cancer development and progression. Continued advances in air quality control, molecular diagnostics, and precision therapies are essential for prevention, early detection, and reduction of the global disease burden.

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Cite This Study

Chen et al. (2026) studied this question.

synapsesocial.com/papers/6966f30613bf7a6f02c0082dhttps://doi.org/10.3390/diagnostics16020245
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