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Effective reduction in seizure severity and prevention of a fatty liver by a novel low ratio ketogenic diet composition in the rapid kindling rat model of epileptogenesis.

Authors :
Meeusen, Hester
Kalf, Rozemarijn S.
Broekaart, Diede W.M.
Silva, Jose P.
Verkuyl, J. Martin
van Helvoort, Ardy
Gorter, Jan A.
van Vliet, Erwin A.
Aronica, Eleonora
Source :
Experimental Neurology. Sep2024, Vol. 379, pN.PAG-N.PAG. 1p.
Publication Year :
2024

Abstract

Drug-resistant epilepsy patients may benefit from non-pharmacological therapies, such as the ketogenic diet (KD). However, its high fat content poses compliance challenges and metabolic risks. To mitigate this, we developed a novel KD composition with less fat and additional nutrients (citrate, nicotinamide riboside, and omega-3 fatty acids) for ketone-independent neuroprotection. The efficacy, metabolic and neuropathological effects of the novel KD and a classic KD were compared to a control diet in the rapid kindling model of temporal lobe epilepsy. Both KD groups entered ketosis before kindling onset, with higher ketone levels in the classic KD group. Remarkably, rats on the novel KD had slower progression of behavioral seizures as compared to rats on a control diet, while this was not the case for rats on a classic KD. Both KDs reduced electrographic after-discharge duration, preserved neurons in the dorsal hippocampus, and normalized activity in open field tests. The novel KD, despite lower fat and ketone levels, demonstrated effective reduction of behavioral seizure severity while the classic KD did not, suggesting alternative mode(s) of action are involved. Additionally, the novel KD significantly mitigated liver triglyceride and plasma fatty acid levels compared to the classic KD, indicating a reduced risk of long-term liver steatosis. Our findings highlight the potential of the novel KD to enhance therapeutic efficacy and compliance in epilepsy patients. • Effective reduction in seizure severity by the novel KD in the rapid kindling model. • Both the novel and classic KD reduce the after-discharge duration in the rapid kindling model • Both the novel and the classic KD normalize kindling-induced behavioral alterations in the open field test. • The novel KD prevented the formation of a fatty liver. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00144886
Volume :
379
Database :
Academic Search Index
Journal :
Experimental Neurology
Publication Type :
Academic Journal
Accession number :
178640832
Full Text :
https://doi.org/10.1016/j.expneurol.2024.114861