Abstract
Type 2 diabetes is a major health problem associated with excess mortality and morbidity. Vascular complications are one of the most serious consequences of this disorder. Moreover, type 2 diabetes is also a risk factor for cerebral complications, including cognitive impairment and dementia. However, it has been shown that tight glycemic control contributes to reduce the incidence of diabetes-associated complications. Metformin is a potent antihyperglycemic agent widely used in the management of type 2 diabetes whose main actions are the suppression of gluconeogenesis and the improvement of glucose uptake and insulin sensitivity. This review is mainly devoted to describe the mechanisms of action underlying the antidiabetic effects of metformin. Furthermore, we will present evidence for the protective effects of metformin against diabetes-associated complications mainly cerebral and vascular complications. Finally, we will describe the few known side effects associated to this antidiabetic agent.
Keywords: AMP-activated protein kinase, brain protection, diabetes-associated complications, hyperglycemia, insulin resistance, metformin, type 2 diabetes, vasculoprotection
Mini-Reviews in Medicinal Chemistry
Title: Mechanisms of Action of Metformin in Type 2 Diabetes and Associated Complications: An Overview
Volume: 8 Issue: 13
Author(s): Sonia Correia, Cristina Carvalho, Maria S. Santos, Raquel Seica, Catarina R. Oliveira and Paula I. Moreira
Affiliation:
Keywords: AMP-activated protein kinase, brain protection, diabetes-associated complications, hyperglycemia, insulin resistance, metformin, type 2 diabetes, vasculoprotection
Abstract: Type 2 diabetes is a major health problem associated with excess mortality and morbidity. Vascular complications are one of the most serious consequences of this disorder. Moreover, type 2 diabetes is also a risk factor for cerebral complications, including cognitive impairment and dementia. However, it has been shown that tight glycemic control contributes to reduce the incidence of diabetes-associated complications. Metformin is a potent antihyperglycemic agent widely used in the management of type 2 diabetes whose main actions are the suppression of gluconeogenesis and the improvement of glucose uptake and insulin sensitivity. This review is mainly devoted to describe the mechanisms of action underlying the antidiabetic effects of metformin. Furthermore, we will present evidence for the protective effects of metformin against diabetes-associated complications mainly cerebral and vascular complications. Finally, we will describe the few known side effects associated to this antidiabetic agent.
Export Options
About this article
Cite this article as:
Correia Sonia, Carvalho Cristina, Santos S. Maria, Seica Raquel, Oliveira R. Catarina and Moreira I. Paula, Mechanisms of Action of Metformin in Type 2 Diabetes and Associated Complications: An Overview, Mini-Reviews in Medicinal Chemistry 2008; 8 (13) . https://dx.doi.org/10.2174/138955708786369546
DOI https://dx.doi.org/10.2174/138955708786369546 |
Print ISSN 1389-5575 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-5607 |
- Author Guidelines
- Graphical Abstracts
- Fabricating and Stating False Information
- Research Misconduct
- Post Publication Discussions and Corrections
- Publishing Ethics and Rectitude
- Increase Visibility of Your Article
- Archiving Policies
- Peer Review Workflow
- Order Your Article Before Print
- Promote Your Article
- Manuscript Transfer Facility
- Editorial Policies
- Allegations from Whistleblowers
Related Articles
-
Functional Autoradiography Shows Unaltered Cannabinoid CB1 Receptor Signalling in Hippocampus and Cortex of APP/PS1 Transgenic Mice
CNS & Neurological Disorders - Drug Targets Preface [Hot Topic:Inflammatory Markers and Mediators: Emerging Therapeutic Targets in Diabetes, Cardiovascular and Metabolic Disorders (Guest Editor: Samuel Dagogo-Jack, MD)].
Current Drug Targets Cyclooxygenase-1 and -2 in the Different Stages of Alzheimers Disease Pathology
Current Pharmaceutical Design Cognition and Neuropathology in Aging: Multidimensional Perspectives from the Rush Religious Orders Study and Rush Memory and Aging Project
Current Alzheimer Research Suicide and Suicide Attempts in Elderly Patients: An Epidemiological Analysis of Risk Factors and Prevention
Current Pharmaceutical Design Oxidative Stress and Antioxidant Potential of One Hundred Medicinal Plants
Current Topics in Medicinal Chemistry Cerebral Microemboli Increase β-amyloid Protein Deposition, MMP-9, and GFAP Expression in the Alzheimer`s Model of APP/PS1 Double Transgenic Mice
Current Neurovascular Research Multi-Target Profile of Oleocanthal, An Extra-Virgin Olive Oil Component
Current Bioactive Compounds Insight γ-Secretase: Structure, Function, and Role in Alzheimer’s Disease
Current Drug Targets Demonstration of Advanced Data Mining Tools for Optimization of Pellets Employing Modified Extrusion-pelletization Technique
Current Drug Therapy Nanomedicine and its Application in Treatment of Microglia-mediated Neuroinflammation
Current Medicinal Chemistry Therapeutic Targeting of P-Selectin in Atherosclerosis
Inflammation & Allergy - Drug Targets (Discontinued) PDE5 Inhibitors in Non-Urological Conditions
Current Pharmaceutical Design Nanomaterial Based Approaches for the Diagnosis and Therapy of Cardiovascular Diseases
Current Pharmaceutical Design Potential Therapeutic Relevance of Adenosine A2B and A2A Receptors in the Central Nervous System
CNS & Neurological Disorders - Drug Targets The Role of Endothelin-1 in Obstructive Sleep Apnea Syndrome and Pulmonary Arterial Hypertension: Pathogenesis and Endothelin-1 Antagonists
Current Medicinal Chemistry Proinflammatory Gene Polymorphisms and Ischemic Stroke
Current Pharmaceutical Design Correlation Analysis of Capillary APOE, VEGF and eNOS Expression in Alzheimer Brains
Current Alzheimer Research Is Covalently Crosslinked Aβ Responsible for Synaptotoxicity in Alzheimers Disease?
Current Alzheimer Research Disease Modifying Therapeutic Strategies in Alzheimers Disease Targeting the Amyloid Cascade
Current Neuropharmacology