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Golexanolone attenuates neuroinflammation, fatigue, and cognitive and motor impairment in diverse neuroinflammatory disorders
Laboratory of Neurobiology, Centro de Investigación Príncipe Felipe, Valencia, Spain.
Laboratory of Neurobiology, Centro de Investigación Príncipe Felipe, Valencia, Spain.
Laboratory of Neurobiology, Centro de Investigación Príncipe Felipe, Valencia, Spain.
Laboratory of Neurobiology, Centro de Investigación Príncipe Felipe, Valencia, Spain; INCLIVA Instituto de Investigación Sanitaria, Valencia, Spain.
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2025 (English)In: Pharmaceuticals, E-ISSN 1424-8247, Vol. 18, no 11, article id 1757Article, review/survey (Refereed) Published
Abstract [en]

Background and Objectives: Neuroinflammation plays a significant role in liver and neurological disorders via its disruption of neurotransmission, which alters cerebral function, resulting in cognitive and motor impairment, fatigue, anxiety, and depression. A key interaction exists between GABAergic neurotransmission and neuroinflammation, whereby excessive GABAA receptor activation exacerbates cognitive and behavioural impairment. Golexanolone, a novel GABAA-receptor-modulating steroid antagonist (GAMSA), primarily attenuates GABAergic potentiation via GABAA-positive steroid allosteric receptor modulators such as allopregnanolone. This review aims to summarize new evidence showing that golexanolone improves peripheral inflammation, neuroinflammation, and neurological alterations in animal models of different neurological pathologies. We provide an overview of the first clinical trial using this novel compound.

Results: In rat models of hyperammonemia and minimal hepatic encephalopathy (MHE), peripheral inflammation induces microglia and astrocyte activation and neuroinflammation, altering GABAergic neurotransmission and resulting in cognitive and motor impairment. Golexanolone's unique dual action reduces peripheral inflammation and glial activation, thus normalizing neurotransmission and cognitive and motor function. Furthermore, a phase II study in cirrhotic patients with MHE shows that golexanolone is well tolerated and improves cognition. Similarly, in a model of primary biliary cholangitis (PBC) involving bile-duct ligation, peripheral inflammation, neuroinflammation, and altered neurotransmission—associated with fatigue, impaired memory, and locomotor gait and motor incoordination—were reversed by the dual action of golexanolone. In the Parkinson's disease (PD) rat model induced by neurotoxin 6-OHDA, rats exhibited fatigue, anhedonia, impaired memory, and locomotor gait and motor incoordination, which were associated with microglia and astrocyte activation in the substantia nigra and striatum, in addition to tyrosine hydroxylase (TH) loss. Golexanolone reduces microglia and astrocyte activation, partially reduces TH loss, and improves fatigue, anhedonia, memory, locomotor gait, and motor incoordination. Golexanolone also normalizes elevated levels of α-synuclein.

Conclusions: These findings suggest that golexanolone has beneficial therapeutic effects for treating fatigue, depression, motor, and cognitive impairment across diverse neuroinflammatory conditions, including synucleinopathies.

Place, publisher, year, edition, pages
MDPI, 2025. Vol. 18, no 11, article id 1757
Keywords [en]
cognitive impairment, fatigue, GABA neurotransmission, golexanolone, hepatic encephalopathy, microglia activation, motor impairment, neuroinflammation, Parkinson’s disease, primary biliary cholestasis
National Category
Neurology Neurosciences Pharmacology and Toxicology
Identifiers
URN: urn:nbn:se:umu:diva-247525DOI: 10.3390/ph18111757ISI: 001623766100001PubMedID: 41304999Scopus ID: 2-s2.0-105023210568OAI: oai:DiVA.org:umu-247525DiVA, id: diva2:2021189
Available from: 2025-12-12 Created: 2025-12-12 Last updated: 2025-12-12Bibliographically approved

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Bäckström, Torbjörn

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