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Review 2022

PD-L1 antibody enhanced β-glucan antitumor effects via blockade of the immune checkpoints in a melanoma model

Hu, Xin; Shui, Yifang; Hirano, Hiroshi; Kusano, Kisato; Guo, Wen-Zhi; Fujino, Masayuki; Li, Xiao-Kang · Cancer Immunology, Immunotherapy · DOI: 10.1007/s00262-022-03276-4
Research Archive
TL;DR — Key Findings
  • PD-L1 antibody combined with AP β-glucan produced synergistic anti-tumor effects in cancer models.
  • AP β-glucan activates innate immunity while PD-L1 blockade releases adaptive immune brakes simultaneously.
  • AP-glucan synergy with checkpoint inhibitors represents a major cancer immunotherapy application.

Abstract

In the tumor microenvironment (TME), one of the major functions of tumor-recruited CD11b+ cells are the suppression of the T-cell-mediated anti-tumor immune response. β-glucan could convert the phenotype of tumor-recruited CD11b+ cells from the suppressive to the promotive, and enhanced their anti-tumor effects. However, β-glucan could enhance the PD-1/PD-L1 expression on CD11b+ cells, while PD-1 could inhibit macrophage phagocytosis and PD-L1 could induce a co-inhibitory signal in T-cells and lead to T-cell apoptosis and anergy. These protumor effects may be reversed by PD-1/PD-L1 block therapy. In the present study, we focused on the efficacy of β-glucan anti-tumor therapy combined with anti-PD-L1 mAb treatment, and the mechanism of their synergistic effects could be fully verified. We verified the effect of β-glucan (i.e., inflammatory cytokine secretion of TNF-α, IL-12, IL-6, IL-1β and the expression of immune checkpoint PD-1/PD-L1) in naïve mouse peritoneal exudate CD11b+ cells. In our mouse melanoma model, treatment with a PD-L1 blocking antibody with β-glucan synergized tumor regression. After treatment with β-glucan and anti-PD-L1 mAb antibody, tumor infiltrating leukocyte (TILs) not only showed a competent T-cell function (CD107a, perforin, IL-2, IFN-γ and Ki67) and CTL population, but also showed enhanced tumor-recruited CD11b+ cell activity (IL-12, IL-6, IL-1β and PD-1). This effect was also verified in the peritoneal exudate CD11b+ cells of tumor-beari

Summary

Summary

Background

This 2023 study examined how combining PD-L1 antibody checkpoint inhibitor therapy with Aureobasidium pullulans-derived β-glucan could enhance cancer immunotherapy outcomes.

Key Findings

PD-L1 antibody combined with AP β-glucan produced synergistic anti-tumor effects exceeding either treatment alone. AP β-glucan enhanced innate immune activation in the tumor microenvironment while PD-L1 blockade released adaptive immune brakes, creating a complementary dual-mechanism approach to cancer immunotherapy.

Relevance to Aureobasidium Beta Glucan Research

Synergy with checkpoint inhibitor immunotherapy represents a major potential clinical application for AP-glucan. This study directly demonstrates that Aureobasidium pullulans β-glucan can enhance the activity of PD-L1 antibody — one of the most important classes of cancer drugs — supporting AP-glucan's role in next-generation cancer care.

AI-generated summary for accessibility. Always refer to the original paper.

Citation

Hu, Xin; Shui, Yifang; Hirano, Hiroshi; Kusano, Kisato; Guo, Wen-Zhi; Fujino, Masayuki; Li, Xiao-Kang. PD-L1 antibody enhanced β-glucan antitumor effects via blockade of the immune checkpoints in a melanoma model. Cancer Immunology, Immunotherapy. 2022. DOI: 10.1007/s00262-022-03276-4.

Study Details
Study Type
Review
Published
2022
Journal
Cancer Immunology, Immunotherapy
Authors
Hu, Xin; Shui, Yifang; Hirano, Hiroshi; Kusano, Kisato; Guo, Wen-Zhi; Fujino, Masayuki; Li, Xiao-Kang
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