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Published on: February 24, 2023
Preexisting Skin-Resident CD8 and γδ T-cell Circuits Mediate Immune Response in Merkel Cell Carcinoma and Predict
Zachary Z Reinstein1,2,3,4, Yue Zhang1,4, Oscar E Ospina5
1Department of Dermatology, Northwestern University Feinberg School of Medicine, Chicago, Illinois.
Abstract:
Merkel cell carcinoma (MCC) is an aggressive neuroendocrine skin cancer with a ∼50% response rate to immune checkpoint blockade (ICB) therapy. To identify predictive biomarkers, we integrated bulk and single-cell RNA sequencing (RNA-seq) with spatial transcriptomics from a cohort of 186 samples from 116 patients, including bulk RNA-seq from 14 matched pairs pre- and post-ICB. In nonresponders, tumors show evidence of increased tumor proliferation, neuronal stem cell markers, and IL1. Responders have increased type I/II interferons and preexisting tissue resident (Trm) CD8 or Vδ1 γδ T cells that functionally converge with overlapping antigen-specific transcriptional programs and clonal expansion of public T-cell receptors. Spatial transcriptomics demonstrated colocalization of T cells with B and dendritic cells, which supply chemokines and costimulation. Lastly, ICB significantly increased clonal expansion or recruitment of Trm and Vδ1 cells in tumors specifically in responders, underscoring their therapeutic importance. These data identify potential clinically actionable biomarkers and therapeutic targets for MCC. Significance: MCC serves as a model of ICB response. We utilized the largest-to-date, multimodal MCC dataset (n = 116 patients) to uncover unique tumor-intrinsic properties and immune circuits that predict response. We identified CD8 Trm and Vδ1 T cells as clinically actionable mediators of ICB response in major histocompatibility complex-high and -low MCCs, respectively.
Insights
Immune checkpoint blockade (ICB) shows promise for Merkel cell carcinoma (MCC). This study identified specific T cells (CD8 Trm and Vδ1 γδ T cells) as key biomarkers predicting response to ICB therapy in MCC patients.
Area of Science:
- Oncology
- Immunology
- Genomics
Background:
- Merkel cell carcinoma (MCC) is an aggressive skin cancer with a 50% response rate to immune checkpoint blockade (ICB).
- Predictive biomarkers for ICB response in MCC are crucial for optimizing treatment strategies.
Purpose of the Study:
- To identify predictive biomarkers for ICB response in MCC.
- To uncover tumor-intrinsic properties and immune circuits influencing ICB efficacy.
Main Methods:
- Integrated bulk and single-cell RNA sequencing (RNA-seq) with spatial transcriptomics.
- Analyzed 186 samples from 116 MCC patients, including matched pre- and post-ICB samples.
- Utilized multimodal data to investigate tumor and immune cell interactions.
Main Results:
- Non-responders exhibited increased tumor proliferation, neuronal stem cell markers, and IL1.
- Responders showed elevated type I/II interferons and pre-existing tissue-resident (Trm) CD8 or Vδ1 γδ T cells.
- Spatial transcriptomics revealed T cell colocalization with B and dendritic cells, crucial for immune activation.
Conclusions:
- CD8 Trm and Vδ1 γδ T cells are clinically actionable mediators of ICB response in MCC.
- These T cell populations and their associated immune circuits represent potential therapeutic targets for improving ICB efficacy in MCC.
- The findings provide insights into MCC's response to ICB, using the largest multimodal dataset to date.
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