The heart is a complex organ composed of multiple cell types, including cardiomyocytes and different non-myocyte populations, all working closely together to determine the hearts properties and maintain normal cardiac function. Connexins are abundantly expressed proteins that form plasma membrane hemichannels and gap junctions between cells. Gap junctions are intracellular channels that allow for communication between cells, and in the heart they play a crucial role in cardiac conduction by coupling adjacent cardiomyocytes. Connexins are expressed in both cardiomyocytes and non-myocytes, including cardiac fibroblasts, endothelial cells, and macrophages. Non-myocytes are the largest population of cells in the heart, and therefore it is impor...
Gap junctions are channels which allow electrical signals to propagate through the heart from the si...
Gap junctions are channels which allow electrical signals to propagate through the heart from the si...
Abstract—Electrical activation of the heart requires current transfer from one cell to another via g...
The heart is a complex organ composed of multiple cell types, including cardiomyocytes and different...
The heart is a complex organ composed of multiple cell types, including cardiomyocytes and different...
The heart is a complex organ composed of multiple cell types, including cardiomyocytes and differen...
Connexins are ubiquitous channel forming proteins that assemble as plasma membrane hemichannels and ...
Connexins are ubiquitous channel forming proteins that assemble as plasma membrane hemichannels and ...
Connexins are a family of transmembrane proteins that play a key role in cardiac physiology. Gap jun...
Connexins are crucial cardiac proteins that form hemichannels and gap junctions. Gap junctions are r...
Gap junctions form the cell-to-cell pathways for propagation of the precisely orchestrated patterns ...
AbstractDifferent combinations and relative quantities of three connexins—connexin43, connexin40 and...
The heart works as a functional syncytium, which is realized via cell-cell coupling maintained by ga...
Cellular interaction in blood vessels is maintained by multiple communication pathways, including ga...
Gap junctions are channels which allow electrical signals to propagate through the heart from the si...
Gap junctions are channels which allow electrical signals to propagate through the heart from the si...
Gap junctions are channels which allow electrical signals to propagate through the heart from the si...
Abstract—Electrical activation of the heart requires current transfer from one cell to another via g...
The heart is a complex organ composed of multiple cell types, including cardiomyocytes and different...
The heart is a complex organ composed of multiple cell types, including cardiomyocytes and different...
The heart is a complex organ composed of multiple cell types, including cardiomyocytes and differen...
Connexins are ubiquitous channel forming proteins that assemble as plasma membrane hemichannels and ...
Connexins are ubiquitous channel forming proteins that assemble as plasma membrane hemichannels and ...
Connexins are a family of transmembrane proteins that play a key role in cardiac physiology. Gap jun...
Connexins are crucial cardiac proteins that form hemichannels and gap junctions. Gap junctions are r...
Gap junctions form the cell-to-cell pathways for propagation of the precisely orchestrated patterns ...
AbstractDifferent combinations and relative quantities of three connexins—connexin43, connexin40 and...
The heart works as a functional syncytium, which is realized via cell-cell coupling maintained by ga...
Cellular interaction in blood vessels is maintained by multiple communication pathways, including ga...
Gap junctions are channels which allow electrical signals to propagate through the heart from the si...
Gap junctions are channels which allow electrical signals to propagate through the heart from the si...
Gap junctions are channels which allow electrical signals to propagate through the heart from the si...
Abstract—Electrical activation of the heart requires current transfer from one cell to another via g...