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Updated: May 26, 2025

Author Spotlight: Advancements in Molecular Biomarker Testing for Non-Squamous Non-Small Cell Lung Cancer
Published on: September 8, 2023
Translating premalignant biology to accelerate non-small-cell lung cancer interception
Sarah A Mazzilli1, Zahraa Rahal2, Maral J Rouhani3
1Sectional Computational Biomedicine, Boston University Chobanian & Avedisian School of Medicine, Boston, MA, USA. mazzilli@bu.edu.
Abstract:
Over the past decade, substantial progress has been made in the development of targeted and immune-based therapies for patients with advanced non-small-cell lung cancer. To further improve outcomes for patients with lung cancer, identifying and intercepting disease at the earliest and most curable stages are crucial next steps. With the recent implementation of low-dose computed tomography scan screening in populations at high risk, there is an emerging unmet need for new diagnostic, prognostic and therapeutic tools to help treat patients suspected of harbouring premalignant lesions and minimally invasive non-small-cell lung cancer. Continued advances in the identification of the earliest drivers of lung carcinogenesis are poised to address these unmet needs. Employing multimodal approaches to chart the temporal and spatial maps of the molecular events driving lung premalignant lesion progression will refine our understanding of early carcinogenesis. Elucidating the molecular drivers of premalignancy is critical to the development of biomarkers to detect those incubating a premalignant lesion, to stratify risk for progression to invasive cancer and to identify novel therapeutic targets to intercept that process. In this Review, we summarize emerging insights into the earliest cellular and molecular events associated with lung squamous and adenocarcinoma carcinogenesis and highlight the growing opportunity for translating these insights into clinical tools for early detection and disease interception to transform the outcomes for those at risk for lung cancer.
Insights
Early detection of lung cancer is key. Understanding the molecular drivers of premalignancy can lead to new diagnostic tools and therapies for early-stage non-small-cell lung cancer.
Area of Science:
- Oncology
- Molecular Biology
- Pulmonology
Background:
- Advances in targeted and immune therapies have improved outcomes for advanced non-small-cell lung cancer (NSCLC).
- Early detection and interception of lung cancer are critical for improving patient survival.
- Low-dose computed tomography (LDCT) screening identifies high-risk populations, creating a need for tools to manage premalignant lesions and early-stage NSCLC.
Purpose of the Study:
- To review emerging insights into the earliest cellular and molecular events in lung carcinogenesis.
- To highlight opportunities for translating these findings into clinical applications for early detection and disease interception.
Main Methods:
- Multimodal approaches to map molecular events in lung premalignant lesion progression.
- Analysis of cellular and molecular events in lung squamous and adenocarcinoma carcinogenesis.
Main Results:
- Identification of key molecular drivers in early lung carcinogenesis.
- Understanding the temporal and spatial progression of premalignant lesions.
- Elucidation of molecular drivers critical for biomarker development and therapeutic targeting.
Conclusions:
- Insights into early carcinogenesis can inform the development of biomarkers for detecting premalignant lesions.
- Understanding molecular drivers aids in risk stratification for progression to invasive cancer.
- Translating early carcinogenesis research into clinical tools can transform outcomes for individuals at risk for lung cancer.
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