Vitamin E Enhances Cancer Immunotherapy by Reinvigorating Dendritic Cells via Targeting Checkpoint SHP1

Author:

Yuan Xiangliang1ORCID,Duan Yimin1,Xiao Yi1,Sun Kai23ORCID,Qi Yutao1,Zhang Yuan1,Ahmed Zamal1ORCID,Moiani Davide1,Yao Jun1ORCID,Li Hongzhong1,Zhang Lin1,Yuzhalin Arseniy E.1ORCID,Li Ping1,Zhang Chenyu1,Badu-Nkansah Akosua1,Saito Yohei1,Liu Xianghua1,Kuo Wen-Ling1,Ying Haoqiang1,Sun Shao-Cong4,Chang Jenny C.23,Tainer John A.1ORCID,Yu Dihua1ORCID

Affiliation:

1. 1Department of Molecular and Cellular Oncology, The University of Texas MD Anderson Cancer Center, Houston, Texas.

2. 2Houston Methodist Research Institute, Houston, Texas.

3. 3Houston Methodist Cancer Center, Houston, Texas.

4. 4Department of Immunology, The University of Texas MD Anderson Cancer Center, Houston, Texas.

Abstract

Abstract Despite the popular use of dietary supplements during conventional cancer treatments, their impacts on the efficacies of prevalent immunotherapies, including immune-checkpoint therapy (ICT), are unknown. Surprisingly, our analyses of electronic health records revealed that ICT-treated patients with cancer who took vitamin E (VitE) had significantly improved survival. In mouse models, VitE increased ICT antitumor efficacy, which depended on dendritic cells (DC). VitE entered DCs via the SCARB1 receptor and restored tumor-associated DC functionality by directly binding to and inhibiting protein tyrosine phosphatase SHP1, a DC-intrinsic checkpoint. SHP1 inhibition, genetically or by VitE treatment, enhanced tumor antigen cross-presentation by DCs and DC-derived extracellular vesicles (DC-EV), triggering systemic antigen-specific T-cell antitumor immunity. Combining VitE with DC-recruiting cancer vaccines or immunogenic chemotherapies greatly boosted ICT efficacy in animals. Therefore, combining VitE supplement or SHP1-inhibited DCs/DC-EVs with DC-enrichment therapies could substantially augment T-cell antitumor immunity and enhance the efficacy of cancer immunotherapies. Significance: The impacts of nutritional supplements on responses to immunotherapies remain unexplored. Our study revealed that dietary vitamin E binds to and inhibits DC checkpoint SHP1 to increase antigen presentation, prime antitumor T-cell immunity, and enhance immunotherapy efficacy. VitE-treated or SHP1-silenced DCs/DC-EVs could be developed as potent immunotherapies. This article is highlighted in the In This Issue feature, p. 1599

Funder

NIH

METAVivor research

MD Anderson Duncan Family Institute for Cancer Prevention and Risk Assessment NIH Cancer Center Support Grant

Cancer Prevention Research Institute of Texas

Publisher

American Association for Cancer Research (AACR)

Subject

Oncology

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