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Molecular interactions of diabetes medications with alzheimer's related targets by molecular docking
Atiyeh Kolouei1, Mohammad Barati1
1Department of Applied Chemistry, Faculty of Chemistry, University of Kashan, Kashan, Iran.
Abstract:
Diabetes, a prevalent chronic disease known for its complications such as cardiovascular issues, eye damage, and neuropathy, has increasingly been linked to an elevated risk of Alzheimer's disease and cognitive impairment. Individuals with diabetes are approximately twice as likely to experience cognitive dysfunction compared to the general population. This heightened risk is potentially mediated by factors such as hypoglycemic episodes, which can negatively impact brain function, particularly the hippocampus, a key region for memory. Furthermore, shared molecular and cellular characteristics between diabetes and Alzheimer's, such as the role of insulin in amyloid plaque formation, suggest a direct link between insulin resistance in the brain and the development of Alzheimer's-related pathology. This study investigates the potential of two commonly prescribed diabetes medications, Ertugliflozin and Sitagliptin, to impact Alzheimer's disease-related factors. Ertugliflozin, an SGLT2 inhibitor, lowers blood glucose by increasing glucose excretion via the kidneys, while Sitagliptin, a DPP-4 inhibitor, enhances insulin secretion and reduces glucagon secretion by preventing the breakdown of incretin hormones. Molecular docking was performed to assess the interaction of these drugs with five key targets implicated in Alzheimer's disease: amyloid-β, β-secretase (BACE1), γ-secretase, and acetylcholinesterase (AChE). The aim was to determine whether Ertugliflozin and Sitagliptin exhibit inhibitory effects on these Alzheimer's-related targets, suggesting a potential dual role beyond their established glucose-regulating mechanisms in diabetes. In this study, Metformin was utilized as the positive control ligand. Docking analysis revealed that Ertugliflozin and Sitagliptin exhibited the highest molecular affinity for γ-secretase (PDB code: 6iyc), followed by favorable interactions with β-secretase (PDB code: 1fkn) and amyloid-β (PDB code: 1iyt). Notably, Ertugliflozin showed notable interactions with acetylcholinesterase (PDB code: 1eve), whereas Sitagliptin showed no significant interaction with acetylcholinesterase. These findings suggest that Ertugliflozin and Sitagliptin, commonly used for diabetes management, may also influence factors implicated in Alzheimer's disease. By potentially inhibiting these factors, the drugs could exhibit a dual action, benefiting both diabetes and Alzheimer's. Further in vivo and clinical studies are needed to confirm these observations.
Insights
This study explored if diabetes medications Ertugliflozin and Sitagliptin could impact Alzheimer's disease targets. Findings suggest these drugs may influence Alzheimer's-related factors, potentially offering dual benefits for diabetes and cognitive health.
Area of Science:
- Neuroscience
- Pharmacology
- Endocrinology
Background:
- Diabetes mellitus is linked to an increased risk of Alzheimer's disease and cognitive impairment.
- Shared pathways, including insulin resistance and amyloid plaque formation, suggest a biological connection.
- Hypoglycemic episodes in diabetes can negatively affect brain function, particularly memory-related regions.
Purpose of the Study:
- To investigate the potential of Ertugliflozin (SGLT2 inhibitor) and Sitagliptin (DPP-4 inhibitor) to interact with key Alzheimer's disease targets.
- To assess if these common diabetes medications exhibit inhibitory effects on targets like amyloid-β, BACE1, γ-secretase, and AChE.
- To explore a potential dual role for these drugs beyond glucose regulation.
Main Methods:
- Molecular docking simulations were employed to analyze drug-target interactions.
- Ertugliflozin and Sitagliptin were docked against five targets implicated in Alzheimer's pathology.
- Metformin was used as a positive control ligand for comparison.
Main Results:
- Both Ertugliflozin and Sitagliptin showed significant molecular affinity for γ-secretase, β-secretase (BACE1), and amyloid-β.
- Ertugliflozin demonstrated notable interactions with acetylcholinesterase (AChE), while Sitagliptin did not.
- The drugs exhibited favorable binding profiles with key Alzheimer's-related targets.
Conclusions:
- Ertugliflozin and Sitagliptin may possess mechanisms that influence Alzheimer's disease pathology.
- These diabetes medications could potentially offer a dual therapeutic benefit for patients with both conditions.
- Further in vivo and clinical research is warranted to validate these computational findings.
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