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Updated: Jan 8, 2026

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A Gut-on-a-Chip Model to Study the Gut Microbiome-Nervous System Axis
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神経迷走神経刺激による腸内細菌叢調節の新たなパラダイム:腸-脳軸における電気微生物相互作用
Jingwen Liang1, Xiunan Li2, Chunyang Mao3
1College of Pharmaceutical Sciences & Key Laboratory of Ministry of Education in Protection and Utilization of Medicinal Resources of Liupanshan Area, Ningxia Medical University, Yinchuan 750004, Ningxia, China.
Current opinion in pharmacology
|December 20, 2025
まとめ
迷走神経刺激(VNS)は腸内細菌叢に影響を与え、それが脳機能に影響を与える。微生物産物も迷走神経活動を調節し、中枢神経系疾患の新たな治療標的を提供する。
科学分野:
- 神経科学
- 微生物学
- 消化器病学
背景:
- 中枢神経系(CNS)疾患には新規治療法が必要である。
- 腸-脳軸は迷走神経を介した双方向性のコミュニケーションを含む。
- VNSはてんかんやうつ病に使用されている。
研究 の 目的:
- VNSが腸内細菌叢に及ぼすメカニズムをレビューする。
- 迷走神経活動に対する微生物のフィードバックを探求する。
- 新規治療法のための腸-脳インターフェースのクロストークを理解する。
主な方法:
- 既存の文献の系統的レビュー。
- 神経、免疫、代謝経路の分析。
- 腸内細菌叢の組成と機能に対するVNSの影響の調査。
主要な成果:
- VNSは腸内細菌叢を調節し、疾患の進行に影響を与える。
- 腸内細菌叢の代謝産物は迷走神経活動に影響を与える。
- 神経、免疫、代謝経路を通じた双方向性のシグナル伝達が行われる。
結論:
- VNSと腸内細菌叢の相互作用は治療の可能性を提供する。
- 腸-脳インターフェースを標的とすることで、新規CNS疾患治療法が得られる可能性がある。
- このクロストークの理解は、将来の介入の鍵となる。
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