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T-cells produce acidic niches in lymph nodes to suppress their own effector functions

Medicine and Health

T-cells produce acidic niches in lymph nodes to suppress their own effector functions

H. Wu, V. Estrella, et al.

This groundbreaking research reveals how the acidic environment of tumors inhibits the function of activated CD8+ T-cells, suggesting a physiological mechanism in immune regulation. Conducted by leading experts in cancer immunology, the study uncovers the role of acidic niches in lymph nodes and their impact on T-cell metabolism and activation.

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~3 min • Beginner • English
Abstract
The acidic pH of tumors profoundly inhibits effector functions of activated CD8 + T-cells. We hypothesize that this is a physiological process in immune regulation, and that it occurs within lymph nodes (LNs), which are likely acidic because of low convective flow and high glucose metabolism. Here we show by in vivo fluorescence and MR imaging, that LN paracortical zones are profoundly acidic. These acidic niches are absent in athymic Nu/Nu and lymphodepleted mice, implicating T-cells in the acidifying process. T-cell glycolysis is inhibited at the low pH observed in LNs. We show that this is due to acid inhibition of monocarboxylate transporters (MCTs), resulting in a negative feedback on glycolytic rate. Importantly, we demonstrate that this acid pH does not hinder initial activation of naïve T-cells by dendritic cells. Thus, we describe an acidic niche within the immune system, and demonstrate its physiological role in regulating T-cell activation.
Publisher
Nature Communications
Published On
Aug 17, 2020
Authors
Hao Wu, Veronica Estrella, Matthew Beatty, Dominique Abrahams, Asmaa El-Kenawi, Shonagh Russell, Arig Ibrahim-Hashim, Dario Livio Longo, Yana K. Reshetnyak, Anna Moshnikova, Oleg A. Andreev, Kimberly Luddy, Mehdi Damaghi, Krithika Kodumudi, Smitha R. Pillai, Pedro Enriquez-Navas, Shari Pilon-Thomas, Pawel Swietach, Robert J. Gillies
Tags
tumor acidity
CD8+ T-cells
glycolysis
immune regulation
lymph nodes
metabolism
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