Gut metabolite S-equol ameliorates hyperexcitability in entorhinal cortex neurons following Theiler murine encephalomyelitis virus-induced acute seizures

被引:14
作者
Gallucci, Allison [1 ,2 ]
Patel, Dipan C. [3 ]
Thai, K'Ehleyr [1 ,2 ]
Trinh, Jonathan [4 ]
Gude, Rosalie [2 ]
Shukla, Devika [5 ]
Campbell, Susan L. [2 ,5 ]
机构
[1] Virginia Tech, Grad Program Translat Biol Med & Hlth, Roanoke, VA USA
[2] Virginia Polytech Inst & State Univ, Anim & Poultry Sci, 2200 Litton Reaves Hall, Blacksburg, VA 24061 USA
[3] Virginia Polytech Inst & State Univ, Fralin Biomed Res Inst, Roanoke, VA USA
[4] Univ S Alabama, Coll Med, Mobile, AL USA
[5] Virginia Polytech Inst & State Univ, Sch Neurosci, Blacksburg, VA 24061 USA
关键词
electrophysiology; gut-brain axis; seizures; S-equol; TMEV; EPILEPSY; MICROBIOME;
D O I
10.1111/epi.16979
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Objective A growing body of evidence indicates a potential role for the gut-brain axis as a novel therapeutic target in treating seizures. The present study sought to characterize the gut microbiome in Theiler murine encephalomyelitis virus (TMEV)-induced seizures, and to evaluate the effect of microbial metabolite S-equol on neuronal physiology as well as TMEV-induced neuronal hyperexcitability ex vivo. Methods We infected C57BL/6J mice with TMEV and monitored the development of acute behavioral seizures 0-7 days postinfection (dpi). Fecal samples were collected at 5-7 dpi and processed for 16S sequencing, and bioinformatics were performed with QIIME2. Finally, we conducted whole-cell patch-clamp recordings in cortical neurons to investigate the effect of exogenous S-equol on cell intrinsic properties and neuronal hyperexcitability. Results We demonstrated that gut microbiota diversity is significantly altered in TMEV-infected mice at 5-7 dpi, exhibiting separation in beta diversity in TMEV-infected mice dependent on seizure phenotype, and lower abundance of genus Allobaculum in TMEV-infected mice regardless of seizure phenotype. In contrast, we identified specific loss of S-equol-producing genus Adlercreutzia as a microbial hallmark of seizure phenotype following TMEV infection. Electrophysiological recordings indicated that exogenous S-equol alters cortical neuronal physiology. We found that entorhinal cortex neurons are hyperexcitable in TMEV-infected mice, and exogenous application of microbial-derived S-equol ameliorated this TMEV-induced hyperexcitability. Significance Our study presents the first evidence of microbial-derived metabolite S-equol as a potential mechanism for alteration of TMEV-induced neuronal excitability. These findings provide new insight for the novel role of S-equol and the gut-brain axis in epilepsy treatment.
引用
收藏
页码:1829 / 1841
页数:13
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