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Updated: Dec 27, 2025

Morphological and Compositional Analysis of Neutrophil Extracellular Traps Induced by Microbial and Chemical Stimuli
Published on: November 4, 2022
Memantine Displays Antimicrobial Activity by Enhancing Escherichia coli Pathogen-Induced Formation of Neutrophil
Liang Peng1, Li Li2,3, Xiao-Long He4
1Department of Clinical Laboratory, The Fifth Affiliated Hospital of Guangzhou Medical University, Guangzhou, China.
Abstract:
Bacterial infection remains one of the leading causes of death worldwide due to the continuous rise of multiple antibiotic-resistant bacteria. Focusing solely on bacteria as the drug targets is a major limitation inherent in the conventional antibiotic therapy. Recently, host-directed therapies have become such an innovative approach to modulate the host defense system and the interplay of innate and adaptive immunity. Our previous studies showed that memantine (MEM), an α7 nAChR antagonist, could efficiently block multi-drug resistant Escherichia coli-caused bacteremia and meningitis in a mouse model. However, the underlying mechanisms that govern the antibacterial effects of MEM are still unknown. In this study, we demonstrated that MEM is able to significantly suppress E. coli infection by enhancing E. coli-induced formation and release of NETs in vitro and in vivo. MEM could promote the trapping and bactericidal activities of the polymorphonuclear neutrophils (PMNs) in a manner dependent on α7 nAChR, since knockdown of this receptor noticeably reduces the survival ability of bacteria in PMNs while MEM no longer affects the survival of bacteria in PMNs. Our results also showed that when the expression of S100A9, an antiseptic protein, is inhibited, pathogen survival rates in PMNs increase significantly. MEM reverses this effect in a concentration-dependent manner. MEM stimulates the production of MPO, S100A9, and DNA in PMNs and accelerates the release of depolymerized chromatin fibers into the extracellular space, suggesting the formation of NETs. Taken together, our data suggest that MEM effectively blocks bacterial infection through the promotion of the antibacterial function of NETs induced by E. coli.
Insights
Memantine (MEM) enhances neutrophil extracellular traps (NETs) to fight E. coli infections. This host-directed therapy boosts immune cells
Area of Science:
- Microbiology
- Immunology
- Pharmacology
Background:
- Bacterial infections cause significant global mortality, exacerbated by rising antibiotic resistance.
- Conventional antibiotic therapy faces limitations by targeting bacteria directly.
- Host-directed therapies offer a novel strategy to bolster host immunity against pathogens.
Purpose of the Study:
- To elucidate the underlying mechanisms of memantine's (MEM) antibacterial effects against multi-drug resistant *Escherichia coli*.
- To investigate MEM's role in modulating host immune responses, specifically neutrophil extracellular traps (NETs).
Main Methods:
- In vitro and in vivo experiments using a mouse model of *E. coli* infection.
- Assessment of NET formation, polymorphonuclear neutrophil (PMN) activity, and S100A9 protein expression.
- α7 nicotinic acetylcholine receptor (α7 nAChR) knockdown to confirm receptor dependency.
Main Results:
- MEM significantly suppressed *E. coli* infection by enhancing *E. coli*-induced NET formation and release.
- MEM promoted PMN trapping and bactericidal activity in an α7 nAChR-dependent manner.
- MEM reversed the increased pathogen survival in PMNs caused by S100A9 inhibition, stimulating MPO, S100A9, and DNA production.
Conclusions:
- Memantine effectively combats bacterial infections by promoting the antibacterial functions of NETs.
- The study highlights MEM as a potential host-directed therapeutic agent for antibiotic-resistant bacterial infections.
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