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Review

Novel Spatial Approaches to Dissect the Lung Cancer Immune Microenvironment

Department of Translational Molecular Pathology, The University of Texas MD Anderson Cancer Center, Houston, TX 77030, USA
*
Author to whom correspondence should be addressed.
Cancers 2024, 16(24), 4145; https://doi.org/10.3390/cancers16244145
Submission received: 12 November 2024 / Revised: 7 December 2024 / Accepted: 10 December 2024 / Published: 12 December 2024

Simple Summary

Lung cancer is a deadly disease. Over recent decades, a better understanding of the biological mechanisms implicated in its pathogenesis has led to the development of targeted therapies and immunotherapy, resulting in improvements in patient outcomes. To enhance our understanding of lung cancer tumor biology and advance towards precision oncology, we need a comprehensive tumor profile. In recent years, novel in situ spatial multiomics approaches have emerged, offering a more detailed view of the spatial location of tumor and tumor microenvironment cells. These advancements in in situ profiling may unveil further molecular and immune mechanisms in tumor biology that will lead to the discovery of biomarkers for treatment prediction and prognosis. In this review, we provide an overview of current and emerging pathology-based approaches for spatial immune profiling in lung cancer.

Abstract

Lung cancer is a deadly disease with the highest rates of mortality. Over recent decades, a better understanding of the biological mechanisms implicated in its pathogenesis has led to the development of targeted therapies and immunotherapy, resulting in improvements in patient outcomes. To better understand lung cancer tumor biology and advance towards precision oncology, a comprehensive tumor profile is necessary. In recent years, novel in situ spatial multiomics approaches have emerged offering a more detailed view of the spatial location of tumor and tumor microenvironment cells, identifying their unique composition and functional status. In this sense, novel multiomics platforms have been developed to evaluate tumor heterogeneity, gene expression, metabolic reprogramming, signaling pathway activation, cell–cell interactions, and immune cell programs. In lung cancer research, several studies have used these spatial technologies to locate cells and associated them with histological features that are relevant to the pathogenesis of lung adenocarcinoma. These advancements may unveil further molecular and immune mechanisms in tumor biology that will lead to the discovery of biomarkers for treatment prediction and prognosis. In this review, we provide an overview of more widely used and emerging pathology-based approaches for spatial immune profiling in lung cancer and how they enhance our understanding of tumor biology and immune response.
Keywords: immune profiling; spatial cellular analysis; lung carcinoma immune profiling; spatial cellular analysis; lung carcinoma
Graphical Abstract

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MDPI and ACS Style

Lubo, I.; Hernandez, S.; Wistuba, I.I.; Solis Soto, L.M. Novel Spatial Approaches to Dissect the Lung Cancer Immune Microenvironment. Cancers 2024, 16, 4145. https://doi.org/10.3390/cancers16244145

AMA Style

Lubo I, Hernandez S, Wistuba II, Solis Soto LM. Novel Spatial Approaches to Dissect the Lung Cancer Immune Microenvironment. Cancers. 2024; 16(24):4145. https://doi.org/10.3390/cancers16244145

Chicago/Turabian Style

Lubo, Idania, Sharia Hernandez, Ignacio I. Wistuba, and Luisa Maren Solis Soto. 2024. "Novel Spatial Approaches to Dissect the Lung Cancer Immune Microenvironment" Cancers 16, no. 24: 4145. https://doi.org/10.3390/cancers16244145

APA Style

Lubo, I., Hernandez, S., Wistuba, I. I., & Solis Soto, L. M. (2024). Novel Spatial Approaches to Dissect the Lung Cancer Immune Microenvironment. Cancers, 16(24), 4145. https://doi.org/10.3390/cancers16244145

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