Microbial short-chain fatty acids modulate CD8+ T cell responses and improve adoptive immunotherapy for cancer

Author:

Luu Maik,Riester ZenoORCID,Baldrich Adrian,Reichardt Nicole,Yuille Samantha,Busetti Alessandro,Klein Matthias,Wempe Anne,Leister Hanna,Raifer Hartmann,Picard Felix,Muhammad KhalidORCID,Ohl KimORCID,Romero Rossana,Fischer Florence,Bauer Christian A.,Huber MagdalenaORCID,Gress Thomas M.,Lauth Matthias,Danhof SophiaORCID,Bopp TobiasORCID,Nerreter ThomasORCID,Mulder Imke E.,Steinhoff Ulrich,Hudecek MichaelORCID,Visekruna AlexanderORCID

Abstract

AbstractEmerging data demonstrate that the activity of immune cells can be modulated by microbial molecules. Here, we show that the short-chain fatty acids (SCFAs) pentanoate and butyrate enhance the anti-tumor activity of cytotoxic T lymphocytes (CTLs) and chimeric antigen receptor (CAR) T cells through metabolic and epigenetic reprograming. We show that in vitro treatment of CTLs and CAR T cells with pentanoate and butyrate increases the function of mTOR as a central cellular metabolic sensor, and inhibits class I histone deacetylase activity. This reprogramming results in elevated production of effector molecules such as CD25, IFN-γ and TNF-α, and significantly enhances the anti-tumor activity of antigen-specific CTLs and ROR1-targeting CAR T cells in syngeneic murine melanoma and pancreatic cancer models. Our data shed light onto microbial molecules that may be used for enhancing cellular anti-tumor immunity. Collectively, we identify pentanoate and butyrate as two SCFAs with therapeutic utility in the context of cellular cancer immunotherapy.

Funder

Deutsche Forschungsgemeinschaft

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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