Yaiza M Arenas, Marta Llansola, Gergana Mincheva, Carmina Montoliu, Vicente Felipo
Patients with liver cirrhosis who develop minimal hepatic encephalopathy (MHE) show mild cognitive impairment associated with increased peripheral inflammation, including elevated interleukin-17 (IL-17). In animal models, this inflammation promotes neuroinflammation and disrupts glutamatergic neurotransmission in the hippocampus, contributing to cognitive deficits. This study investigated whether IL-17 is directly involved in cognitive impairment in hyperammonemic rats and explored the mechanisms involved. Hyperammonemic rats received intravenous anti-IL-17 treatment at days 3-5 after induction of hyperammonemia. Cognitive assessment and blood-brain barrier integrity, neuroinflammation, and glutamatergic neurotransmission in the hippocampus were performed after four weeks. Increased peripheral IL-17 activated its receptor in endothelial cells, enhancing NADPH oxidase activity and increasing Myosin light chain kinase (MLCK) levels. This reduced the tight junction proteins occludin and ZO-1, weakening the blood-brain barrier and facilitating immune cell infiltration and IL-17 entry into the hippocampus. Consequently, microglia became activated, increasing TNFα and IL-1β levels and altering membrane expression of glutamate receptors, leading to cognitive impairment. Blocking IL-17 prevented these pathological changes and produced sustained protection against cognitive deficits. These findings support a role of IL-17 in early transmission of peripheral inflammation into the brain initiating hippocampal neuroinflammation and cognitive impairment in MHE and propose anti-IL-17 therapies for MHE.