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The Impact of Glycaemic Variability on Vascular Dysfunction in Diabetes
by
Offler, Laura J.
, Palmer, Timothy M.
, Wells, Liz K.
in
Amputation
/ Analysis
/ Angina pectoris
/ Animals
/ Blood Glucose - analysis
/ Cardiovascular Diseases - epidemiology
/ cardiovascular dysfunction
/ Cardiovascular System - pathology
/ Cardiovascular System - physiopathology
/ Cell culture
/ Cells
/ Cellular signal transduction
/ Diabetes
/ Diabetes mellitus
/ Diabetes Mellitus - blood
/ Diabetes Mellitus - drug therapy
/ Diabetes Mellitus - physiopathology
/ Diabetes therapy
/ Diabetics
/ Disease Models, Animal
/ endothelial dysfunction
/ Foot diseases
/ Global health
/ Glucose
/ glycaemic variation
/ Glycemic Control
/ Heart attack
/ Hemoglobin
/ Humans
/ Hyperglycemia
/ Hypoglycemia
/ Ischemia
/ Leg ulcers
/ Molecular modelling
/ Myocardial infarction
/ Oxidative stress
/ Patients
/ Review
/ Risk
/ Signal transduction
/ Vascular diseases
/ vascular regulation
2025
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The Impact of Glycaemic Variability on Vascular Dysfunction in Diabetes
by
Offler, Laura J.
, Palmer, Timothy M.
, Wells, Liz K.
in
Amputation
/ Analysis
/ Angina pectoris
/ Animals
/ Blood Glucose - analysis
/ Cardiovascular Diseases - epidemiology
/ cardiovascular dysfunction
/ Cardiovascular System - pathology
/ Cardiovascular System - physiopathology
/ Cell culture
/ Cells
/ Cellular signal transduction
/ Diabetes
/ Diabetes mellitus
/ Diabetes Mellitus - blood
/ Diabetes Mellitus - drug therapy
/ Diabetes Mellitus - physiopathology
/ Diabetes therapy
/ Diabetics
/ Disease Models, Animal
/ endothelial dysfunction
/ Foot diseases
/ Global health
/ Glucose
/ glycaemic variation
/ Glycemic Control
/ Heart attack
/ Hemoglobin
/ Humans
/ Hyperglycemia
/ Hypoglycemia
/ Ischemia
/ Leg ulcers
/ Molecular modelling
/ Myocardial infarction
/ Oxidative stress
/ Patients
/ Review
/ Risk
/ Signal transduction
/ Vascular diseases
/ vascular regulation
2025
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Do you wish to request the book?
The Impact of Glycaemic Variability on Vascular Dysfunction in Diabetes
by
Offler, Laura J.
, Palmer, Timothy M.
, Wells, Liz K.
in
Amputation
/ Analysis
/ Angina pectoris
/ Animals
/ Blood Glucose - analysis
/ Cardiovascular Diseases - epidemiology
/ cardiovascular dysfunction
/ Cardiovascular System - pathology
/ Cardiovascular System - physiopathology
/ Cell culture
/ Cells
/ Cellular signal transduction
/ Diabetes
/ Diabetes mellitus
/ Diabetes Mellitus - blood
/ Diabetes Mellitus - drug therapy
/ Diabetes Mellitus - physiopathology
/ Diabetes therapy
/ Diabetics
/ Disease Models, Animal
/ endothelial dysfunction
/ Foot diseases
/ Global health
/ Glucose
/ glycaemic variation
/ Glycemic Control
/ Heart attack
/ Hemoglobin
/ Humans
/ Hyperglycemia
/ Hypoglycemia
/ Ischemia
/ Leg ulcers
/ Molecular modelling
/ Myocardial infarction
/ Oxidative stress
/ Patients
/ Review
/ Risk
/ Signal transduction
/ Vascular diseases
/ vascular regulation
2025
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The Impact of Glycaemic Variability on Vascular Dysfunction in Diabetes
Journal Article
The Impact of Glycaemic Variability on Vascular Dysfunction in Diabetes
2025
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Overview
It is well established that vascular dysfunction is common in people with diabetes mellitus and is associated with increased risk of heart attack, ischaemic stroke and peripheral vascular disease. Although our understanding of the molecular mechanisms responsible is incomplete, persistent hyperglycaemia observed in poorly controlled diabetes has long been thought to be a critical factor. Multiple studies have, therefore, investigated the effects of poor glycaemic control on vascular function in multiple experimental settings, from in vitro and ex vivo models of primary human cells and tissues through to pre-clinical models. This review consolidates our current understanding of how metabolic and cell signalling pathways triggered by poor glycaemic control, impact vascular function in diabetes. We also evaluate how these pathways could be exploited to develop targeted therapeutic approaches to improve cardiovascular outcomes specifically in people with diabetes.
Publisher
MDPI AG,Multidisciplinary Digital Publishing Institute (MDPI)
Subject
/ Analysis
/ Animals
/ Cardiovascular Diseases - epidemiology
/ Cardiovascular System - pathology
/ Cardiovascular System - physiopathology
/ Cells
/ Cellular signal transduction
/ Diabetes
/ Diabetes Mellitus - drug therapy
/ Diabetes Mellitus - physiopathology
/ Glucose
/ Humans
/ Ischemia
/ Patients
/ Review
/ Risk
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