| Literature DB >> 35360161 |
Abstract
The transcriptional regulator nuclear factor kappa B (NF-κB) modulates cellular biological activity by binding to promoter regions in the nucleus and transcribing various protein-coding genes. The NF-κB pathway plays a major role in the expressing genes related to inflammation, including chemokines, interleukins, and tumor necrosis factor. It also transcribes genes that can promote neuronal survival or apoptosis. Epilepsy is one of the most common brain disorders and it not only causes death worldwide but also affects the day-to-day life of affected individuals. While epilepsy has diverse treatment options, there remain patients who are not sensitive to the existing treatment methods. Recent studies have implicated the critical role of NF-κB in epilepsy. It is upregulated in neurons, glial cells, and endothelial cells, due to neuronal loss, glial cell proliferation, blood-brain barrier dysfunction, and hippocampal sclerosis through the glutamate and γ-aminobutyric acid imbalance, ion concentration changes, and other mechanisms. In this review, we summarize the functional changes caused by the upregulation of NF-κB in the central nervous system during different periods after seizures. This review is the first to deconvolute the complicated functions of NF-κB, and speculate that the regulation of NF-κB can be a safe and effective treatment strategy for epilepsy.Entities:
Keywords: NF-kappa B; chemokines; epilepsy; inflammation; interleukins; tumor necrosis factor
Year: 2022 PMID: 35360161 PMCID: PMC8961383 DOI: 10.3389/fnins.2022.851394
Source DB: PubMed Journal: Front Neurosci ISSN: 1662-453X Impact factor: 4.677
NF-κB proteins with abnormal expression and/or activity associated with epilepsy.
| Author | Year | Country | Treatment drug | Time after treatment | Method | Type of NF-κB | Species | Brain areas |
| Qu et al. ( | 2019 | China | Lithium-pilocarpine | 24h | qRT-PCR, WB | p65 | SD rats | Hippocampus |
| Shi et al. ( | 2018 | China | – | – | IHC | p65 | Human | Brain |
| Ojo et al. ( | 2019 | Nigeria | Kainic acid | 6h | IHC | p65 | Swiss rats | Hippocampus |
| Singh et al. ( | 2018 | India | Pentylenetetrazole | – | WB | – | Wistar rats | Hippocampus |
| Mohamed et al. ( | 2020 | Egypt | Pentylenetetrazole | 14d | ELISA | – | Wistar rats | Hippocampus |
| Wang et al. ( | 2017 | China | Lithium-pilocarpine | 1,7,14,30,60d | qRT-PCR | – | SD rats | Hippocampus |
| Blondeau et al. ( | 2001 | France | Kainic acid | 1,24,72h | WB | p50, p65 | Wistar rats | Hippocampus |
| Ryu et al. ( | 2011 | Korea | Lithium-pilocarpine | 3-4d | IHC | p65-Ser536 (while p52-Ser865, p52-Ser869, p65-Ser276, p65-Ser311, p65-468,p65-Ser529 were decreased in degenerating neurons) | SD rats | Hippocampus |
| Won et al. ( | 1999 | Korea | Kainic acid | 0.5,4,8,24,72h | IHC,WB | p50 | SD rats | Hippocampus |
| Firdous et al. ( | 2021 | Pakistan | Pentylenetetrazole | – | ELISA | pNF-κB | SD rats | Cortex, Hippocampus |
| Miller et al. ( | 2014 | United States | Kainic acid | 24h | IF | – | cis- NF-κBEGFP transgenic reporter mice | Hippocampus |
| Paudel et al. ( | 2020 | Malaysia | Pilocarpine | 10d | RT-PCR | – | Zebrafish | Brain |
d, days; ELISA, enzyme linked immunosorbent assay; h, hours; IF, immunofluorescence; IHC, immunocytochemistry; qRT-PCR; Real-Time Quantitative Reverse Transcription Polymerase Chain Reaction; RT-PCR, Reverse Transcription-Polymerase Chain Reaction; Ser, Serine; SD rats, Sprague Dawley rats; WB, Western-Blot.
FIGURE 1A mind map of NF-κB dysfunction in epilepsy. Bcl2, B-cell lymphoma-2; CCL2, chemokine (C-C motif) ligand 2; COX-2, cyclooxygenase 2; CX3CL1, fractalkine; Glu, glutamate; GABA, γ-aminobutyric acid; ILs, interleukins; IFN, interferons; MnSOD, manganese-superoxide dismutase; MRP, multidrug resistance protein; MDR, multiple drug resistance; NF-κB, nuclear factor kappa B; NOS, nitric oxide synthase; eNOS, endothelial nitric oxide synthase; iNOS, inducible nitric oxide synthase; nNOS, neuronal nitric oxide synthase; PG, prostaglandin; P-gp, P-glycoprotein; TNF, Tumor Necrosis Factor.