Department of Anatomy, School of Basic Medical Sciences, Babcock University, Ilishan Remo, Ogun State, Nigeria.
* Corresponding Author; Email: onyemak@babcock.edu.ng.
ORCID Details
Oluwaseyi Emmanuel Kolawole: https://orcid.org/0009-0005-4849-7030
Oluseyi Sunday Fabiyi: https://orcid.org/0000-0003-4938-0908
Olugbenga Olawole Olayinka: https://orcid.org/0000-0002-1008-9593
Caroline Ifeoluwa Olakanmi: https://orcid.org/0009-0006-0300-3305
Kehinde Lawal: https://orcid.org/0009-0009-9445-1390
Kelechi Roselyn Onyema: https://orcid.org/0009-0003-1946-0226
World Journal of Biology Pharmacy and Health Sciences, 2026, 27(02), 186–190
Article DOI: 10.30574/wjbphs.2026.27.2.0435
Received on 14 July 2026; revised on 26 August 2026; accepted on 28 August 2026
Epilepsy is increasingly recognized not merely as a functional electrical disorder but as a condition associated with progressive and, in many cases, region-specific structural reorganization of the brain. Neuroimaging and histopathological studies over the past two decades have demonstrated that recurrent seizures are accompanied by hippocampal sclerosis, mossy fiber sprouting, granule cell dispersion, cortical thinning, white matter tract disruption, and, in some models, alterations extending to extra-limbic and even extra-cranial structures. These structural alterations are not static end-points but evolve dynamically with disease duration, seizure frequency, and etiology, and they carry important implications for diagnosis, prognosis, and surgical planning. This review synthesizes current evidence on structural brain changes in epilepsy, drawing on human neuroimaging and histopathology literature as well as preclinical rodent studies, including several recent Nigerian experimental studies using lithium chloride-pilocarpine and kainic acid models that have examined hippocampal, prefrontal cortical, and limbic architecture following induced seizures and after treatment with plant-derived neuroprotective agents. We discuss the cellular and molecular underpinnings of hippocampal sclerosis, cortical and subcortical atrophy, white matter and network level changes, and the emerging use of structural biomarkers, while highlighting therapeutic strategies, including antiepileptic drugs, ketogenic diet, and Phyto therapeutic agents, that may attenuate or reverse these structural sequelae.
Hippocampal Sclerosis; Mossy Fiber Sprouting; Granule Cell Dispersion; Cortical Atrophy; Epileptogenesis; Neuroimaging; Epilepsy
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Oluwaseyi Emmanuel Kolawole, Oluseyi Sunday Fabiyi, Olugbenga Olawole Olayinka, Caroline Ifeoluwa Olakanmi, Kehinde Lawal and Onyema Kelechi Roselyn. STRUCTURAL REMODELING OF THE EPILEPTIC BRAIN: AN ANATOMICAL AND HISTOPATHOLOGICAL REVIEW. World Journal of Biology Pharmacy and Health Sciences, 2026, 27(02), 186–190. Article DOI: https://doi.org/10.30574/wjbphs.2026.27.2.0435