Standard

Inherited and seizure-induced abnormalities in the temporal cortex astroglia of Krushinsky-Molodkina audiogenic rats: A pilot study. / Григорьева, Юлия; Иванова, Ксения; Черниговская, Елена; Наумова, Александра; Глазова, Маргарита.

In: Molecular Brain Research, Vol. 1870, 150056, 01.2026.

Research output: Contribution to journalArticlepeer-review

Harvard

Григорьева, Ю, Иванова, К, Черниговская, Е, Наумова, А & Глазова, М 2026, 'Inherited and seizure-induced abnormalities in the temporal cortex astroglia of Krushinsky-Molodkina audiogenic rats: A pilot study', Molecular Brain Research, vol. 1870, 150056. https://doi.org/10.1016/j.brainres.2025.150056

APA

Григорьева, Ю., Иванова, К., Черниговская, Е., Наумова, А., & Глазова, М. (2026). Inherited and seizure-induced abnormalities in the temporal cortex astroglia of Krushinsky-Molodkina audiogenic rats: A pilot study. Molecular Brain Research, 1870, [150056]. https://doi.org/10.1016/j.brainres.2025.150056

Vancouver

Григорьева Ю, Иванова К, Черниговская Е, Наумова А, Глазова М. Inherited and seizure-induced abnormalities in the temporal cortex astroglia of Krushinsky-Molodkina audiogenic rats: A pilot study. Molecular Brain Research. 2026 Jan;1870. 150056. https://doi.org/10.1016/j.brainres.2025.150056

Author

Григорьева, Юлия ; Иванова, Ксения ; Черниговская, Елена ; Наумова, Александра ; Глазова, Маргарита. / Inherited and seizure-induced abnormalities in the temporal cortex astroglia of Krushinsky-Molodkina audiogenic rats: A pilot study. In: Molecular Brain Research. 2026 ; Vol. 1870.

BibTeX

@article{6b14a6f57e354db98d215d59d84354e9,
title = "Inherited and seizure-induced abnormalities in the temporal cortex astroglia of Krushinsky-Molodkina audiogenic rats: A pilot study",
abstract = "The role of astrocytes in the pathogenesis of temporal lobe epilepsy (TLE) is intensively studied. Here, we present a pilot study of astrocytes in the temporal cortex of Krushinsky-Molodkina (KM) rats, which are genetically prone to audiogenic seizures (AGS) and may be used as a model of TLE when exposed to audiogenic kindling. Na{\"i}ve KM rats (with no AGS) were compared to Wistar rats to disclose the inherited abnormalities, and KM rats after 14-day audiogenic kindling were compared to na{\"i}ve ones to determine TLE effects. Our results demonstrated that in the temporal cortex of na{\"i}ve KM rats, the population of ALDH1L1-positive astrocytes was unaltered, while GFAP-positive astrocytes were localized only in the outer layers. Nuclear factor IA (NFIA)-positive astrocytes were distributed evenly, but their number was also lower. In addition, decreased aquaporin 4 and Kir4.1 were revealed indicating defective water and potassium homeostasis. These data point on genetically determined disfunction of cortex astroglia associated with inherited epileptic predisposition. After audiogenic kindling, KM rats still demonstrated no changes in ALDH1L1 expression, however, exhibited increased number of NFIA-positive astrocytes in the temporal cortex and upregulation of GFAP, aldolase C, and glutamine synthetase. Meanwhile, kindling further exacerbated the basal deficits of aquaporin 4 and Kir4.1.",
keywords = "Audiogenic seizures, GFAP, Krushinsky-Molodkina rats, NFIA, Temporal cortex, Temporal lobe epilepsy",
author = "Юлия Григорьева and Ксения Иванова and Елена Черниговская and Александра Наумова and Маргарита Глазова",
year = "2026",
month = jan,
doi = "10.1016/j.brainres.2025.150056",
language = "English",
volume = "1870",
journal = "Molecular Brain Research",
issn = "0006-8993",
publisher = "Elsevier",

}

RIS

TY - JOUR

T1 - Inherited and seizure-induced abnormalities in the temporal cortex astroglia of Krushinsky-Molodkina audiogenic rats: A pilot study

AU - Григорьева, Юлия

AU - Иванова, Ксения

AU - Черниговская, Елена

AU - Наумова, Александра

AU - Глазова, Маргарита

PY - 2026/1

Y1 - 2026/1

N2 - The role of astrocytes in the pathogenesis of temporal lobe epilepsy (TLE) is intensively studied. Here, we present a pilot study of astrocytes in the temporal cortex of Krushinsky-Molodkina (KM) rats, which are genetically prone to audiogenic seizures (AGS) and may be used as a model of TLE when exposed to audiogenic kindling. Naïve KM rats (with no AGS) were compared to Wistar rats to disclose the inherited abnormalities, and KM rats after 14-day audiogenic kindling were compared to naïve ones to determine TLE effects. Our results demonstrated that in the temporal cortex of naïve KM rats, the population of ALDH1L1-positive astrocytes was unaltered, while GFAP-positive astrocytes were localized only in the outer layers. Nuclear factor IA (NFIA)-positive astrocytes were distributed evenly, but their number was also lower. In addition, decreased aquaporin 4 and Kir4.1 were revealed indicating defective water and potassium homeostasis. These data point on genetically determined disfunction of cortex astroglia associated with inherited epileptic predisposition. After audiogenic kindling, KM rats still demonstrated no changes in ALDH1L1 expression, however, exhibited increased number of NFIA-positive astrocytes in the temporal cortex and upregulation of GFAP, aldolase C, and glutamine synthetase. Meanwhile, kindling further exacerbated the basal deficits of aquaporin 4 and Kir4.1.

AB - The role of astrocytes in the pathogenesis of temporal lobe epilepsy (TLE) is intensively studied. Here, we present a pilot study of astrocytes in the temporal cortex of Krushinsky-Molodkina (KM) rats, which are genetically prone to audiogenic seizures (AGS) and may be used as a model of TLE when exposed to audiogenic kindling. Naïve KM rats (with no AGS) were compared to Wistar rats to disclose the inherited abnormalities, and KM rats after 14-day audiogenic kindling were compared to naïve ones to determine TLE effects. Our results demonstrated that in the temporal cortex of naïve KM rats, the population of ALDH1L1-positive astrocytes was unaltered, while GFAP-positive astrocytes were localized only in the outer layers. Nuclear factor IA (NFIA)-positive astrocytes were distributed evenly, but their number was also lower. In addition, decreased aquaporin 4 and Kir4.1 were revealed indicating defective water and potassium homeostasis. These data point on genetically determined disfunction of cortex astroglia associated with inherited epileptic predisposition. After audiogenic kindling, KM rats still demonstrated no changes in ALDH1L1 expression, however, exhibited increased number of NFIA-positive astrocytes in the temporal cortex and upregulation of GFAP, aldolase C, and glutamine synthetase. Meanwhile, kindling further exacerbated the basal deficits of aquaporin 4 and Kir4.1.

KW - Audiogenic seizures

KW - GFAP

KW - Krushinsky-Molodkina rats

KW - NFIA

KW - Temporal cortex

KW - Temporal lobe epilepsy

UR - https://www.mendeley.com/catalogue/770d1f87-6855-3d6e-9c03-b839c8a94ce1/

U2 - 10.1016/j.brainres.2025.150056

DO - 10.1016/j.brainres.2025.150056

M3 - Article

VL - 1870

JO - Molecular Brain Research

JF - Molecular Brain Research

SN - 0006-8993

M1 - 150056

ER -

ID: 147993788