Hepatic encephalopathy complications are diminished by piracetam via the interaction between mitochondrial function, oxidative stress, inflammatory response, and locomotor activity

Publication date

2023-10

Authors

Niknahad, Hossein
Mobasheri, Ali
Arjmand, Abdollah
Rafiei, Elahe
Alidaee, Sepideh
Razavi, Hadi
Bagheri, Sara
Rezaei, Heresh
Sabouri, Samira
Najibi, Asma

Editors

Advisors

Supervisors

Document Type

Article

Collections

Open Access logo

License

cc_by_nc_nd

Abstract

Background: of the study: Hepatic encephalopathy (HE) is a complication in which brain ammonia (NH4 +) levels reach critically high concentrations because of liver failure. HE could lead to a range of neurological complications from locomotor and behavioral disturbances to coma. Several tactics have been established for subsiding blood and brain NH4 +. However, there is no precise intervention to mitigate the direct neurological complications of NH4 +. Purpose: It has been found that oxidative stress, mitochondrial damage, and neuro-inflammation play a fundamental role in NH4 + neurotoxicity. Piracetam is a drug used clinically in neurological complications such as stroke and head trauma. Piracetam could significantly diminish oxidative stress and improve brain mitochondrial function. Research methods: In the current study, piracetam (100 and 500 mg/kg, oral) was used in a mice model of HE induced by thioacetamide (TA, 800 mg/kg, single dose, i.p). Results: Significant disturbances in animals’ locomotor activity, along with increased oxidative stress biomarkers, including reactive oxygen species formation, protein carbonylation, lipid peroxidation, depleted tissue glutathione, and decreased antioxidant capacity, were evident in the brain of TA-treated mice. Meanwhile, mitochondrial permeabilization, mitochondrial depolarization, suppression of dehydrogenases activity, and decreased ATP levels were found in the brain of the TA group. The level of pro-inflammatory cytokines was also significantly high in the brain of HE animals. Conclusion: It was found that piracetam significantly enhanced mice's locomotor activity, blunted oxidative stress biomarkers, decreased inflammatory cytokines, and improved mitochondrial indices in hyperammonemic mice. These data suggest piracetam as a neuroprotective agent which could be repurposed for the management of HE.

Keywords

Brain injury, Hepatic encephalopathy, Liver failure, Locomotor disturbances, Pharmacotherapy, General

Citation

Niknahad, H, Mobasheri, A, Arjmand, A, Rafiei, E, Alidaee, S, Razavi, H, Bagheri, S, Rezaei, H, Sabouri, S, Najibi, A, Khodaei, F, Kashani, S M A, Ommati, M M & Heidari, R 2023, 'Hepatic encephalopathy complications are diminished by piracetam via the interaction between mitochondrial function, oxidative stress, inflammatory response, and locomotor activity', Heliyon, vol. 9, no. 10, e20557. https://doi.org/10.1016/j.heliyon.2023.e20557