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Multiplexed Immunofluorescence Analysis and Quantification of Intratumoral PD-1+ Tim-3+ CD8+ T Cells
Published on: February 8, 2018
Multiomics elucidation of surrounding AT2 cells impeding tertiary lymphoid structures function in neoadjuvant
Wenxiang Wang1,2,3, Sida Cheng1, Hongchengcheng Chen1
1Department of Thoracic Surgery, Peking University People's Hospital, Beijing, Beijing, China.
Abstract:
The inconsistent immunotherapy response among lesions in patients with multiple primary lung cancer (MPLC) remains poorly understood, presenting a significant challenge for effective treatment. In this study, we conducted a comprehensive multiomics analysis of all lesions from a patient with MPLC who exhibited varied responses to neoadjuvant chemoimmunotherapy. Further verification was conducted through external single-cell data and multiplex immunohistochemistry of three cases of MPLC.Notably, tertiary lymphoid structures (TLSs) were observed across all nodules, regardless of response, suggesting possible TLS impairment in non-responsive nodules. Cell neighborhood (CN) analysis revealed that type II alveolar epithelial cell (AT2) cell-positive CNs were prevalent in non-responsive nodules, while AT2-negative CNs appeared in responsive nodules, strongly associating AT2 cell presence with a reduced therapeutic response. Spatial colocalization analysis further showed that AT2 cells surrounding TLSs upregulated immunosuppressive markers on B cells within TLSs. The mechanism of this suppressive effect was further unveiled that macrophage migration inhibitory factor (MIF), secreted by AT2 cells, binds to sialic acid acetylesterase (SIAE) receptors on B cells by single-cell RNA sequencing analysis, which were validated in four additional non-responsive nodules from three other patients with MPLC. Multiomics analysis revealed AT2 cells exert immunosuppressive effects by inhibiting B cells within TLS through MIF-SIAE signaling axis in patients with MPLC. These findings offered new perspectives for tailored immunotherapy for patients with MPLC.
Insights
In multiple primary lung cancer (MPLC), type II alveolar epithelial cells (AT2) in non-responsive lesions suppress B cells within tertiary lymphoid structures (TLSs) via the MIF-SIAE pathway, hindering immunotherapy effectiveness.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Inconsistent immunotherapy response across lesions in multiple primary lung cancer (MPLC) poses a treatment challenge.
- Understanding the mechanisms behind varied responses is crucial for improving patient outcomes.
Purpose of the Study:
- To investigate the multiomic landscape of lesions with differential immunotherapy responses in MPLC.
- To elucidate the cellular and molecular interactions driving treatment resistance.
Main Methods:
- Comprehensive multiomics analysis of lesions from an MPLC patient.
- External single-cell data and multiplex immunohistochemistry validation.
- Cell neighborhood and spatial colocalization analyses.
Main Results:
- Tertiary lymphoid structures (TLSs) present in all nodules, potentially impaired in non-responsive ones.
- Type II alveolar epithelial cell (AT2)-positive neighborhoods correlate with non-responsiveness.
- AT2 cells upregulate immunosuppressive markers on B cells within TLS via the macrophage migration inhibitory factor (MIF)-sialic acid acetylesterase (SIAE) axis.
Conclusions:
- AT2 cells exert immunosuppression by inhibiting B cells within TLS through the MIF-SIAE signaling axis in MPLC.
- This mechanism offers new insights for developing tailored immunotherapies for MPLC patients.
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