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Updated: Oct 23, 2025

Orthotopic Transplantation of Syngeneic Lung Adenocarcinoma Cells to Study PD-L1 Expression
Published on: January 19, 2019
Innate immune activation by checkpoint inhibition in human patient-derived lung cancer tissues
Teresa Wm Fan1,2,3, Richard M Higashi1,2,3, Huan Song1,2,3
1Center for Environmental and Systems Biochemistry (CESB), University of Kentucky, Lexington, United States.
Abstract:
Although Pembrolizumab-based immunotherapy has significantly improved lung cancer patient survival, many patients show variable efficacy and resistance development. A better understanding of the drug's action is needed to improve patient outcomes. Functional heterogeneity of the tumor microenvironment (TME) is crucial to modulating drug resistance; understanding of individual patients' TME that impacts drug response is hampered by lack of appropriate models. Lung organotypic tissue slice cultures (OTC) with patients' native TME procured from primary and brain-metastasized (BM) non-small cell lung cancer (NSCLC) patients were treated with Pembrolizumab and/or beta-glucan (WGP, an innate immune activator). Metabolic tracing with 13C6-Glc/13C5,15N2-Gln, multiplex immunofluorescence, and digital spatial profiling (DSP) were employed to interrogate metabolic and functional responses to Pembrolizumab and/or WGP. Primary and BM PD-1+ lung cancer OTC responded to Pembrolizumab and Pembrolizumab + WGP treatments, respectively. Pembrolizumab activated innate immune metabolism and functions in primary OTC, which were accompanied by tissue damage. DSP analysis indicated an overall decrease in immunosuppressive macrophages and T cells but revealed microheterogeneity in immune responses and tissue damage. Two TMEs with altered cancer cell properties showed resistance. Pembrolizumab or WGP alone had negligible effects on BM-lung cancer OTC but Pembrolizumab + WGP blocked central metabolism with increased pro-inflammatory effector release and tissue damage. In-depth metabolic analysis and multiplex TME imaging of lung cancer OTC demonstrated overall innate immune activation by Pembrolizumab but heterogeneous responses in the native TME of a patient with primary NSCLC. Metabolic and functional analysis also revealed synergistic action of Pembrolizumab and WGP in OTC of metastatic NSCLC.
Insights
Pembrolizumab immunotherapy shows variable efficacy in lung cancer. This study used patient lung tissue models to reveal how the tumor microenvironment impacts drug response, identifying potential strategies to improve treatment outcomes.
Area of Science:
- Oncology
- Immunology
- Cancer Metabolism
Background:
- Pembrolizumab immunotherapy improves lung cancer survival but faces challenges with variable efficacy and resistance.
- The tumor microenvironment (TME) critically influences immunotherapy response and resistance.
- Understanding patient-specific TME is essential but limited by current models.
Purpose of the Study:
- To investigate the impact of Pembrolizumab and beta-glucan (WGP) on patient-derived lung cancer organotypic tissue slice cultures (OTC).
- To analyze metabolic and functional responses within the native TME of primary and brain-metastatic non-small cell lung cancer (NSCLC).
- To elucidate mechanisms of Pembrolizumab efficacy and resistance in NSCLC.
Main Methods:
- Utilized patient-derived primary and brain-metastatic NSCLC organotypic tissue slice cultures (OTC).
- Administered Pembrolizumab and/or WGP (innate immune activator).
- Employed metabolic tracing (13C-Glc/Gln), multiplex immunofluorescence, and digital spatial profiling (DSP) for analysis.
Main Results:
- Pembrolizumab activated innate immune metabolism and function in primary NSCLC OTC, with heterogeneous immune responses and tissue damage.
- Pembrolizumab plus WGP synergistically impacted metastatic NSCLC OTC, blocking metabolism and increasing inflammation.
- Identified specific TMEs with altered cancer cell properties associated with resistance to Pembrolizumab.
Conclusions:
- Pembrolizumab induces innate immune activation in NSCLC TME, but responses are heterogeneous.
- Combined Pembrolizumab and WGP show synergistic effects in metastatic NSCLC.
- Patient-derived OTC models are valuable for dissecting TME-mediated drug response and resistance in NSCLC.
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