Abstract Background Proliferation and apoptosis of mesangial cells (MC) are important mechanisms during nephrogenesis, for the maintenance of glomerular homeostasis as well as in renal disease and glomerular regeneration. Expression of chemokines and chemokine receptors by intrinsic renal cells, e.g. SLC/CCL21 on podocytes and CCR7 on MC is suggested to play a pivotal role during these processes. Therefore the effect of selected chemokines on MC proliferation and apoptosis was studied. Methods Proliferation assays, cell death assays including cell cycle analysis, hoechst stain and measurement of caspase-3 activity were performed. Results A dose-dependent, mesangioproliferative effect of the chemokine SLC/CCL21, which is constitutively expre...
Increases in mesangial cell number may herald glomerular scarring, but they are not irreversible. Th...
Various immunological and nonimmunological glomerular diseases were found to be associated with an i...
Regulation of mesangial cell proliferation. Regardless of the source of injury, an imbalance in the ...
BACKGROUND: Proliferation and apoptosis of mesangial cells (MC) are important mechanisms during neph...
The release of chemokines by intrinsic renal cells is an important mechanism for the regulation of l...
The homeostatic chemokine receptor CCR7 serves as key molecule in lymphocyte homing into secondary l...
BACKGROUND: Adherence of human mesangial cells to the surrounding matrix contributes to glomerular h...
Binding of the chemokine SLC/CCL21 to its receptor CCR7 increases adhesive properties of human mesan...
Chemokines are thought to play a pivotal role in mediating the selective migration of leukocytes int...
Chemokines and chemokine receptors are involved in the resolution or progression of renal disease. L...
Chemokines play pivotal roles in the recruitment of inflammatory cells into the kidney. The chemokin...
Increases in mesangial cell number may herald glomerular scarring, but they are not irreversible. Th...
BACKGROUND: Chemokines play a major role in leukocyte infiltration in inflammatory kidney diseases. ...
AbstractGlomerular mesangial cells are regarded as specialized smooth muscle cells located within th...
Abstract To explore the role of suppressor of cytokine signaling‐3 (SOCS‐3) in mesangial proliferati...
Increases in mesangial cell number may herald glomerular scarring, but they are not irreversible. Th...
Various immunological and nonimmunological glomerular diseases were found to be associated with an i...
Regulation of mesangial cell proliferation. Regardless of the source of injury, an imbalance in the ...
BACKGROUND: Proliferation and apoptosis of mesangial cells (MC) are important mechanisms during neph...
The release of chemokines by intrinsic renal cells is an important mechanism for the regulation of l...
The homeostatic chemokine receptor CCR7 serves as key molecule in lymphocyte homing into secondary l...
BACKGROUND: Adherence of human mesangial cells to the surrounding matrix contributes to glomerular h...
Binding of the chemokine SLC/CCL21 to its receptor CCR7 increases adhesive properties of human mesan...
Chemokines are thought to play a pivotal role in mediating the selective migration of leukocytes int...
Chemokines and chemokine receptors are involved in the resolution or progression of renal disease. L...
Chemokines play pivotal roles in the recruitment of inflammatory cells into the kidney. The chemokin...
Increases in mesangial cell number may herald glomerular scarring, but they are not irreversible. Th...
BACKGROUND: Chemokines play a major role in leukocyte infiltration in inflammatory kidney diseases. ...
AbstractGlomerular mesangial cells are regarded as specialized smooth muscle cells located within th...
Abstract To explore the role of suppressor of cytokine signaling‐3 (SOCS‐3) in mesangial proliferati...
Increases in mesangial cell number may herald glomerular scarring, but they are not irreversible. Th...
Various immunological and nonimmunological glomerular diseases were found to be associated with an i...
Regulation of mesangial cell proliferation. Regardless of the source of injury, an imbalance in the ...