Pleiotropic modulation of the gut-brain-lung axis by ketamine and its enantiomers

氯胺酮 神经炎症 神经保护 药理学 神经科学 中枢神经系统 医学 抗抑郁药 不利影响 肠道菌群 信号转导 PI3K/AKT/mTOR通路 外围设备 拟精神病 受体 动物研究 呼吸系统 作用机理 右美沙芬 病态行为 体内 AMPA受体 化学 炎症 脂质信号 谷氨酸受体 苯环己定 痛觉过敏 生物信息学
作者
Xinyu Zhao,Xinyu Zhang,Shiying Yuan,Kenji Hashimoto,Jiancheng Zhang
出处
期刊:Molecular Psychiatry [Springer Nature]
标识
DOI:10.1038/s41380-026-03590-8
摘要

Ketamine, a potent N-methyl-D-aspartate receptor (NMDAR) antagonist, is widely used for anesthesia and analgesia and, because of its rapid antidepressant effects, in psychiatry. Increasing evidence suggests that ketamine and its enantiomers-(R)-ketamine (arketamine) and (S)-ketamine (esketamine)-also modulate systemic immunity and provide organ protection, partly through interactions with the gut microbiota, microbial metabolites, and intestinal immune-cell trafficking. However, these gut-mediated pathways must be distinguished from ketamine's well-established direct central and peripheral actions. In this review, we summarize how ketamine engages the gut-brain and gut-lung axes, emphasizing anti-inflammatory, immunoregulatory, and barrier-protective effects, while critically evaluating the evidence for causality in gut-organ communication. Along the gut-brain axis, ketamine is associated with restoration of microbial balance, normalization of short-chain fatty acid levels, and reduced migration of gut-derived γδ T17 and Th17 cells to the central nervous system, correlating with attenuated neuroinflammation and depressive-like behaviors. Through the gut-lung axis, ketamine has been reported to limit bacterial translocation and mesenteric lymph-associated inflammatory signaling and reduces pulmonary infiltration of pro-inflammatory cells, suggesting potential relevance in acute lung injury and other respiratory disorders. We also discuss enantiomer-specific effects: arketamine appears to provide more sustained neuroprotection and may be associated with fewer adverse effects than esketamine. Overall, these findings suggest the broad therapeutic potential of ketamine and its enantiomers for neuropsychiatric and inflammatory diseases, while underscoring the need for careful evaluation of long-term safety, optimal dosing, microbiota-targeted adjunctive strategies, and causal studies to distinguish direct pharmacological actions from indirect, microbiota-mediated effects.
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