Angiogenesis impairment in hyperglycemic patients represents a leading cause of severe vascular complications of both type-1 and -2 diabetes mellitus (DM). Angiogenesis dysfunction in DM is related to glycemic control; however, molecular mechanisms involved are still unclear. Fibroblast growth factor-2 (FGF-2) is a potent angiogenic factor and, according to previous evidence, may represent a key target of molecular modifications triggered by high-sugar exposure. Therefore, the purpose of this study was to investigate whether short incubation with hyperglycemic levels of glucose affected FGF-2 and whether glucose-modified FGF-2 was detectable in vivo. Biochemical analyses carried out with SDS-PAGE, fluorescence emission, mass-spectrometry, i...
The goal of this dissertation was to test the hypothesis that fibroblast growth factor-2 (FGF2) is r...
Although vascular complications are a hallmark of diabetes, the molecular mechanisms that underlie e...
Blood and lymphatic vasculatures are intimately involved in tissue oxygenation and fluid homeostasis...
Both clinical and animal studies have shown that angiogenesis is impaired in diabetes mellitus; howe...
Ineffectual wound healing in hyperglycaemic patients suffering from diabetes mellitus is characteris...
Diabetes impairs physiological angiogenesis by molecular mechanisms that are not fully understood. M...
<div><p>Diabetes impairs physiological angiogenesis by molecular mechanisms that are not fully under...
The aim of the present study was to investigate the role of GV (glycaemic variability) in diabetic v...
Diabetes impairs physiological angiogenesis by molecular mechanisms that are not fully understood. M...
Background: Gestational diabetes mellitus (GDM) is associated with structural and functional alterat...
Fibroblast growth factor 2 (FGF-2) is normally synthesized at low levels but is elevated in various ...
OBJECTIVE—L5, a circulating electronegative LDL identified in patients with hypercholesterolemia or ...
OBJECTIVE-L5, a circulating electronegative LDL identified in patients with hypercholesterolemia or ...
Aims: Excessive glucose serum concentration, endothelial dysfunction and microangiopathy are key fea...
AbstractPeople with diabetes experience morbidity and mortality from unregulated microvascular remod...
The goal of this dissertation was to test the hypothesis that fibroblast growth factor-2 (FGF2) is r...
Although vascular complications are a hallmark of diabetes, the molecular mechanisms that underlie e...
Blood and lymphatic vasculatures are intimately involved in tissue oxygenation and fluid homeostasis...
Both clinical and animal studies have shown that angiogenesis is impaired in diabetes mellitus; howe...
Ineffectual wound healing in hyperglycaemic patients suffering from diabetes mellitus is characteris...
Diabetes impairs physiological angiogenesis by molecular mechanisms that are not fully understood. M...
<div><p>Diabetes impairs physiological angiogenesis by molecular mechanisms that are not fully under...
The aim of the present study was to investigate the role of GV (glycaemic variability) in diabetic v...
Diabetes impairs physiological angiogenesis by molecular mechanisms that are not fully understood. M...
Background: Gestational diabetes mellitus (GDM) is associated with structural and functional alterat...
Fibroblast growth factor 2 (FGF-2) is normally synthesized at low levels but is elevated in various ...
OBJECTIVE—L5, a circulating electronegative LDL identified in patients with hypercholesterolemia or ...
OBJECTIVE-L5, a circulating electronegative LDL identified in patients with hypercholesterolemia or ...
Aims: Excessive glucose serum concentration, endothelial dysfunction and microangiopathy are key fea...
AbstractPeople with diabetes experience morbidity and mortality from unregulated microvascular remod...
The goal of this dissertation was to test the hypothesis that fibroblast growth factor-2 (FGF2) is r...
Although vascular complications are a hallmark of diabetes, the molecular mechanisms that underlie e...
Blood and lymphatic vasculatures are intimately involved in tissue oxygenation and fluid homeostasis...