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Multiplexed Immunofluorescence Analysis and Quantification of Intratumoral PD-1+ Tim-3+ CD8+ T Cells
Published on: February 8, 2018
Single-cell RNA sequencing reveals distinct cellular factors for response to immunotherapy targeting CD73 and PD-1 in
Miok Kim1, Yong Ki Min1, Jinho Jang2,3
1Therapeutics & Biotechnology Division, Drug Discovery Platform Research Center, Korea Research Institute of Chemical Technology, Daejeon, Republic of Korea.
Background:
Although cancer immunotherapy is one of the most effective advanced-stage cancer therapies, no clinically approved cancer immunotherapies currently exist for colorectal cancer (CRC). Recently, programmed cell death protein 1 (PD-1) blockade has exhibited clinical benefits according to ongoing clinical trials. However, ongoing clinical trials for cancer immunotherapies are focused on PD-1 signaling inhibitors such as pembrolizumab, nivolumab, and atezolizumab. In this study, we focused on revealing the distinct response mechanism for the potent CD73 ectoenzyme selective inhibitor AB680 as a promising drug candidate that functions by blocking tumorigenic ATP/adenosine signaling in comparison to current therapeutics that block PD-1 to assess the value of this drug as a novel immunotherapy for CRC.
Methods:
To understand the distinct mechanism of AB680 in comparison to that of a neutralizing antibody against murine PD-1 used as a PD-1 blocker, we performed single-cell RNA sequencing of CD45+ tumor-infiltrating lymphocytes from untreated controls (n=3) and from AB680-treated (n=3) and PD-1-blockade-treated murine CRC in vivo models. We also used flow cytometry, Azoxymethane (AOM)/Dextran Sulfate Sodium (DSS) models, and in vitro functional assays to validate our new findings.
Results:
We initially observed that the expressions of Nt5e (a gene for CD73) and Entpd1 (a gene for CD39) affect T cell receptor (TCR) diversity and transcriptional profiles of T cells, thus suggesting their critical roles in T cell exhaustion within tumor. Importantly, PD-1 blockade significantly increased the TCR diversity of Entpd1-negative T cells and Pdcd1-positive T cells. Additionally, we determined that AB680 improved the anticancer functions of immunosuppressed cells such as Treg and exhausted T cells, while the PD-1 blocker quantitatively reduced Malat1high Treg and M2 macrophages. We also verified that PD-1 blockade induced Treg depletion in AOM/DSS CRC in vivo models, and we confirmed that AB680 treatment caused increased activation of CD8+ T cells using an in vitro T cell assay.
Conclusions:
The intratumoral immunomodulation of CD73 inhibition is distinct from PD-1 inhibition and exhibits potential as a novel anticancer immunotherapy for CRC, possibly through a synergistic effect when combined with PD-1 blocker treatments. This study may contribute to the ongoing development of anticancer immunotherapies targeting refractory CRC.
Insights
This study reveals that CD73 inhibition with AB680 offers a distinct approach to colorectal cancer (CRC) immunotherapy compared to PD-1 blockade. AB680 enhances anti-tumor immune cell function and may synergize with PD-1 inhibitors for refractory CRC.
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- Colorectal cancer (CRC) lacks approved immunotherapies despite their effectiveness in other advanced cancers.
- Programmed cell death protein 1 (PD-1) blockade shows promise in ongoing CRC clinical trials.
- Current immunotherapies primarily target PD-1 signaling pathways.
Purpose of the Study:
- To elucidate the distinct response mechanism of the CD73 inhibitor AB680 in colorectal cancer.
- To compare the efficacy of AB680 with PD-1 blockade as a novel immunotherapy for CRC.
- To assess the potential of targeting ATP/adenosine signaling via CD73 inhibition.
Main Methods:
- Single-cell RNA sequencing of tumor-infiltrating lymphocytes in murine CRC models.
- Comparison of AB680 treatment with PD-1 blockade.
- Flow cytometry, Azoxymethane (AOM)/Dextran Sulfate Sodium (DSS) models, and in vitro functional assays.
Main Results:
- CD73 and CD39 expression influence T cell receptor diversity and exhaustion.
- PD-1 blockade increased T cell receptor diversity in specific T cell subsets.
- AB680 enhanced anticancer functions of immunosuppressed cells (Treg, exhausted T cells) and activated CD8+ T cells.
- PD-1 blockade reduced Treg and M2 macrophage populations and induced Treg depletion.
Conclusions:
- CD73 inhibition by AB680 modulates the tumor immune microenvironment distinctly from PD-1 inhibition.
- AB680 demonstrates potential as a novel immunotherapy for colorectal cancer.
- Combination therapy with PD-1 blockers may offer synergistic benefits for refractory CRC.

