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A Behavioral Screen for Heat-Induced Seizures in Mouse Models of Epilepsy
Published on: July 12, 2021
The Pathogenesis of Fever-Induced Febrile Seizures and Its Current State
Palesa Mosili1, Shreyal Maikoo2, Musa Vuyisile Mabandla3
1University of KwaZulu-Natal College of Health Sciences, Durban, KwaZulu-Natal, South Africa.
Insights
Febrile seizures in children are linked to increased cytokines and neurotransmitter imbalances. New treatments are needed due to side effects of current options.
Area of Science:
- Neurology
- Immunology
- Pediatrics
Background:
- Febrile seizures are common in young children, triggered by fever from infections.
- Infections cause cytokine release (IL-1β, IL-6, TNF-α) and PAMPs like LPS.
- These factors compromise the blood-brain barrier, allowing neuroinflammation and fever induction via PGE2.
Purpose of the Study:
- To elucidate the molecular mechanisms underlying febrile seizure pathogenesis.
- To highlight the role of cytokines and neurotransmitter imbalance in febrile seizures.
- To underscore the need for novel, accessible treatments.
Main Methods:
- Review of existing literature on febrile seizures, cytokine signaling, and neuroinflammation.
- Analysis of the interplay between immune response and central nervous system activation.
- Examination of the pathways leading to fever and convulsions.
Main Results:
- Elevated cytokines (IL-1β) activate microglia, increasing PGE2 production and fever.
- IL-1β dysregulates neurotransmission, increasing excitation and decreasing inhibition, leading to seizures.
- Current treatments have significant side effects, necessitating alternatives.
Conclusions:
- Febrile seizures involve complex neuro-inflammatory pathways driven by cytokines.
- Targeting these pathways may offer new therapeutic strategies.
- Accessible and safe treatments are crucial, especially for low-income regions.
Abstract:
Febrile seizures, commonly in children between the ages of 3 months to 5 years, are a neurological abnormality characterized by neuronal hyper-excitability, that occur as a result of an increased core body temperature during a fever, which was caused by an underlying systemic infection. Such infections cause the immune system to elicit an inflammatory response resulting in the release of cytokines from macrophages. The cytokines such as interleukin (IL)- 1β, IL-6, and tumour necrosis factor-α (TNF-α) combat the infection in the localized area ultimately spilling over into circulation resulting in elevated cytokine levels. The cytokines, along with pathogen-associated molecular patterns (PAMPs) expressed on pathogens for example, lipopolysaccharide (LPS), interact with the blood brain barrier (BBB) causing a 'leaky' BBB which facilitates cytokines and LPS entry into the central nervous system. The cytokines activate the microglia which release their own cytokines, specifically IL1β. IL-β interacts with the brain endothelium resulting in the activation of cyclooxygenase 2 which catalyzes the production of prostaglandin 2 (PGE2). PGE2 enters the hypothalamic region and induces a fever. Abnormally increased IL-1β levels also progressively increases excitatory (glutamatergic) neurotransmission, and decreases inhibitory (GABAergic) neurotransmission, thus mediating the pathogenesis of convulsions. Current treatments for febrile seizures present with side effects that are detrimental to health, which fosters the need for an alternative, more affordable treatment with fewer adverse side effects, and 1 that is easily accessible, especially in low income areas that are also affected by other underlying socio-economic factors, in which febrile seizures are of growing concern.
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