Advanced glycation end products (AGE) are central to the development of cardiovascular complications associated with diabetes mellitus. AGE may alter cellular function through cross-linking of cellular proteins or by activating the AGE receptor (RAGE). However, the signalling molecules involved during AGE stimulation in cardiomyocytes remain unclear. Here, we investigated the effects of AGE treatment on intracellular calcium homeostasis of isolated cardiomyocytes and studied the activation of signalling molecules involved in this process. Treatment of cardiomyocytes with AGE for 24 h resulted in a dose-dependent reduction in calcium transient amplitude, reaching a maximum 50% reduction at a dose of 1 mg·mL−1. This was accompanied with a 32%...
Vascular calcification, especially medial artery calcification, is associated with cardiovascular de...
Background/Aims: High-molecular-weight advanced glycation end-products (HMW-AGEs) are abundantly pre...
It is well known that alterations in intracellular calcium, [Ca2]i, mobilization in the heart are am...
Post-translational modification of proteins in diabetes, including formation of advanced glycation e...
Background:- Diabetes mellitus (OM) is a metabolic disorder commonly associated with advanced glycat...
Diabetic heart disease is a distinct clinical entity that can progress to heart failure and sudden d...
© 2020 Lina T. Al Kury. Diabetes mellitus (DM) is a chronic metabolic disorder commonly characterize...
© 2020 Lina T. Al Kury. Diabetes mellitus (DM) is a chronic metabolic disorder commonly characterize...
The signal transduction processes by which an individual cell is able to recognize and respond to it...
Advanced glycation end products (AGEs) are produced through the non enzymatic glycation and oxidatio...
Abstract Background Advanced glycation end-products (AGEs) are elevated under diabetic conditions an...
Advanced glycation endproducts (AGEs) have been reported to play a role in neointimal formation and ...
peer reviewedAdvanced glycation end products (AGEs) are produced through the non enzymatic glycation...
Advanced glycation endproducts (AGEs)-induced vascular smooth muscle cell (VSMCs) proliferation and ...
Diabetes mellitus is a predominant cause of mortality and morbidity worldwide. One of its serious he...
Vascular calcification, especially medial artery calcification, is associated with cardiovascular de...
Background/Aims: High-molecular-weight advanced glycation end-products (HMW-AGEs) are abundantly pre...
It is well known that alterations in intracellular calcium, [Ca2]i, mobilization in the heart are am...
Post-translational modification of proteins in diabetes, including formation of advanced glycation e...
Background:- Diabetes mellitus (OM) is a metabolic disorder commonly associated with advanced glycat...
Diabetic heart disease is a distinct clinical entity that can progress to heart failure and sudden d...
© 2020 Lina T. Al Kury. Diabetes mellitus (DM) is a chronic metabolic disorder commonly characterize...
© 2020 Lina T. Al Kury. Diabetes mellitus (DM) is a chronic metabolic disorder commonly characterize...
The signal transduction processes by which an individual cell is able to recognize and respond to it...
Advanced glycation end products (AGEs) are produced through the non enzymatic glycation and oxidatio...
Abstract Background Advanced glycation end-products (AGEs) are elevated under diabetic conditions an...
Advanced glycation endproducts (AGEs) have been reported to play a role in neointimal formation and ...
peer reviewedAdvanced glycation end products (AGEs) are produced through the non enzymatic glycation...
Advanced glycation endproducts (AGEs)-induced vascular smooth muscle cell (VSMCs) proliferation and ...
Diabetes mellitus is a predominant cause of mortality and morbidity worldwide. One of its serious he...
Vascular calcification, especially medial artery calcification, is associated with cardiovascular de...
Background/Aims: High-molecular-weight advanced glycation end-products (HMW-AGEs) are abundantly pre...
It is well known that alterations in intracellular calcium, [Ca2]i, mobilization in the heart are am...