Javascript must be enabled to continue!
Gender-Associated Differences in the Regulation of Potassium Channels in Astrocytes of Type 2 Diabetic Mice
View through CrossRef
Hyperglycemia is linked to a higher risk of diabetes, epilepsy, and seizures, which contribute to increased mortality. Previous research has shown that hyperglycemia impairs the function of the polyamine-dependent Kir4.1 channels in cultured astrocytes, and a similar effect was observed in male astrocytes from diabetic (db/db) mice. However, whether there are sex differences in this effect remains unclear. This study aims to compare Kir4.1 channel function in 10–12 week old brains of female db/db mice with that in males and non-diabetic heterozygous (db/+). We performed mRNA analyses, Western blotting (WB), glucose level measurements, and patch-clamp recordings from hippocampal astrocytes in brain slices to assess Kir4.1 channel activity in db/db and db/+ mice of both sexes. Our results showed increased glucose levels in diabetic db/db mice, especially in males, along with (1) reduced synthesis of Kir4.1 channel protein, (2) reduced membrane potential, (3) decreased Kir currents, and (4) compromised potassium uptake. Female diabetic astrocytes exhibited significantly lower barium-blocked Kir4.1 currents compared to diabetic males. Additionally, barium-insensitive currents (leakage currents) were upregulated in db/db mice, likely as a compensatory response to hyperglycemia. In conclusion, diabetes impairs astrocyte function by downregulating Kir4.1 channels, with a more pronounced effect in male diabetic mice. This impairment may increase seizure risk by affecting the ability of astrocytes to maintain extracellular ion balance.
Title: Gender-Associated Differences in the Regulation of Potassium Channels in Astrocytes of Type 2 Diabetic Mice
Description:
Hyperglycemia is linked to a higher risk of diabetes, epilepsy, and seizures, which contribute to increased mortality.
Previous research has shown that hyperglycemia impairs the function of the polyamine-dependent Kir4.
1 channels in cultured astrocytes, and a similar effect was observed in male astrocytes from diabetic (db/db) mice.
However, whether there are sex differences in this effect remains unclear.
This study aims to compare Kir4.
1 channel function in 10–12 week old brains of female db/db mice with that in males and non-diabetic heterozygous (db/+).
We performed mRNA analyses, Western blotting (WB), glucose level measurements, and patch-clamp recordings from hippocampal astrocytes in brain slices to assess Kir4.
1 channel activity in db/db and db/+ mice of both sexes.
Our results showed increased glucose levels in diabetic db/db mice, especially in males, along with (1) reduced synthesis of Kir4.
1 channel protein, (2) reduced membrane potential, (3) decreased Kir currents, and (4) compromised potassium uptake.
Female diabetic astrocytes exhibited significantly lower barium-blocked Kir4.
1 currents compared to diabetic males.
Additionally, barium-insensitive currents (leakage currents) were upregulated in db/db mice, likely as a compensatory response to hyperglycemia.
In conclusion, diabetes impairs astrocyte function by downregulating Kir4.
1 channels, with a more pronounced effect in male diabetic mice.
This impairment may increase seizure risk by affecting the ability of astrocytes to maintain extracellular ion balance.
Related Results
Renal tubular (pro)renin receptor deletion does not protect against kidney injury in db/db mice
Renal tubular (pro)renin receptor deletion does not protect against kidney injury in db/db mice
Background: The (pro)renin receptor (PRR) is a multifunctional protein implicated in blood pressure regulation and kidney fibrosis. Previous studies report enhanced PRR expression ...
Dysregulation of Ca2+ signaling in astrocytes from mice lacking amyloid precursor protein
Dysregulation of Ca2+ signaling in astrocytes from mice lacking amyloid precursor protein
The relationship between altered metabolism of the amyloid-β precursor protein (APP) and Alzheimer's disease is well established but the physiological roles of APP still remain unc...
The adhesion GPCR ADGRV1 controls glutamate homeostasis in hippocampal astrocytes supporting neuron development: first insights into to pathophysiology of
ADGRV1
-associated epilepsy
The adhesion GPCR ADGRV1 controls glutamate homeostasis in hippocampal astrocytes supporting neuron development: first insights into to pathophysiology of
ADGRV1
-associated epilepsy
Abstract
ADGRV1 is the largest member of adhesion G protein-coupled receptor (aGPCR) family. In the cell, aGPCRs have dual roles in cell adhesion...
Astrocytes improve neuronal health after cisplatin treatment through mitochondrial transfer
Astrocytes improve neuronal health after cisplatin treatment through mitochondrial transfer
AbstractNeurodegenerative disorders, including chemotherapy-induced cognitive impairment, are associated with neuronal mitochondrial dysfunction. Cisplatin, a commonly used chemoth...
MO904: Potassium Intake Does Not Predict High Serum Potassium Levels in Haemodialysis Dash Diet Consumers
MO904: Potassium Intake Does Not Predict High Serum Potassium Levels in Haemodialysis Dash Diet Consumers
Abstract
BACKGROUND AND AIMS
As high serum potassium levels can lead to adverse outcomes in haemodialysis (HD) patients, dietary...
An Adjunct Role Of Potassium Rich Vegetarian Diet And A Novel Potassium Food Supplement To Improve Pain In Chronic Rheumatoid Arthritis On Supervised Standard Care: A Randomized Controlled Study
An Adjunct Role Of Potassium Rich Vegetarian Diet And A Novel Potassium Food Supplement To Improve Pain In Chronic Rheumatoid Arthritis On Supervised Standard Care: A Randomized Controlled Study
ABSTRACT
Introduction
Potassium inadequacy (diet and body storage) may adversely affect rheumatoid arthritis (RA) and is sparse...
Morphological comparison of astrocytes in the lamina cribrosa and glial lamina
Morphological comparison of astrocytes in the lamina cribrosa and glial lamina
Abstract
Purpose
Although the mechanisms underlying glaucomatous neurodegeneration are not yet well unders...
GW24-e2259 Evaluation of atherosclerosis in low density lipoprotein receptor defect mice by ultrasound biomicroscopy
GW24-e2259 Evaluation of atherosclerosis in low density lipoprotein receptor defect mice by ultrasound biomicroscopy
Objectives
Low density lipoprotein receptor defect mice model by transgenetic technology was used to detect atherosclerosis by Ultrasound Biology (UBM). And evalu...

