Youssef_2020_Toxicol.Appl.Pharmacol__114954

Reference

Title : Aliskiren and captopril improve cognitive deficits in poorly controlled STZ-induced diabetic rats via amelioration of the hippocampal P-ERK, GSK3beta, P-GSK3beta pathway - Youssef_2020_Toxicol.Appl.Pharmacol__114954
Author(s) : Youssef MM , Abd El-Latif HA , El-Yamany MF , Georgy GS
Ref : Toxicol Appl Pharmacol , :114954 , 2020
Abstract :

Learning and memory deficits are obvious symptoms that develop over time in patients with poorly controlled diabetes. Hyperactivity of the renin-angiotensin system (RAS) is directly associated with beta-cell dysfunction and diabetic complications, including cognitive impairment. Here, we investigated the protective and molecular effects of two RAS modifiers, aliskiren; renin inhibitor and captopril; angiotensin converting enzyme inhibitor, on cognitive deficits in the rat hippocampus. Injection of low dose streptozotocin for 4days resulted in type 1 diabetes. Then, poorly controlled diabetes was mimicked with ineffective daily doses of insulin for 4weeks. The hyperglycaemia and pancreatic atrophy caused memory disturbance that were identifiable in behavioural tests, hippocampal neurodegeneration, and the following significant changes in the hippocampus, increases in the inflammatory marker interleukin 1beta, cholinesterase, the oxidative stress marker malondialdehyde and protein expression of phosphorylated extracellular-signal-regulated kinase and glycogen synthase kinase-3 beta versus decrease in the antioxidant reduced glutathione and protein expression of phosphorylated glycogen synthase kinase-3 beta. Blocking RAS with either drugs along with insulin amended all previously mentioned parameters. Aliskiren stabilized the blood glucose level and restored normal pancreatic integrity and hippocampal malondialdehyde level. Aliskiren showed superior protection against the hippocampal degeneration displayed in the earlier behavioural modification in the passive avoidance test, and the aliskiren group outperformed the control group in the novel object recognition test. We therefore conclude that aliskiren and captopril reversed the diabetic state and cognitive deficits in rats with poorly controlled STZ-induced diabetes through reducing oxidative stress and inflammation and modulating protein expression. Fig. 1.

PubMedSearch : Youssef_2020_Toxicol.Appl.Pharmacol__114954
PubMedID: 32171570

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Citations formats

Youssef MM, Abd El-Latif HA, El-Yamany MF, Georgy GS (2020)
Aliskiren and captopril improve cognitive deficits in poorly controlled STZ-induced diabetic rats via amelioration of the hippocampal P-ERK, GSK3beta, P-GSK3beta pathway
Toxicol Appl Pharmacol :114954

Youssef MM, Abd El-Latif HA, El-Yamany MF, Georgy GS (2020)
Toxicol Appl Pharmacol :114954