Dual effect of lysophosphatidic acid on proliferation of glomerular mesangial cells. Among the variety of factors able to contribute to mesangial hypertrophy by altering mesangial cell growth, lysophosphatidic acid (LPA) is the focus of increasing attention. It is produced in plasma following platelet activation, as well as by mesangial cells stimulated by secretory phospholipase A2. As mitogenic/antimitogenic properties of LPA are already described in a variety of cells, knowledge of its specific actions on mesangial cells is of potential interest regarding the pathophysiology of glomerulus damage in situ. We tested the effect of LPA on cultured rat mesangial cell growth. At 10 to 20 µM, LPA stimulated thymidine incorporation as well as ph...
Aristolochic acid (AA) is considered to be a causative agent for progressive interstitial renal fibr...
Regulation of mesangial cell proliferation. Regardless of the source of injury, an imbalance in the ...
PURPOSE: Excess proliferation of mesenchymal cells such as vascular smooth muscle cells and glomerul...
Dual effect of lysophosphatidic acid on proliferation of glomerular mesangial cells. Among the varie...
Lysophosphatidylcholine induces platelet-derived growth factor gene expression in a cultured human g...
Prostaglandins and rat mesangial cell proliferation. Arachidonate metabolites modulate glomerular me...
Background. Lipoprotein abnormalities are considered to accelerate glomerular injury in various form...
Lysophosphatidic acid-induced proliferation in opossum kidney proximal tubular cells: Role of PI 3-k...
Effect of mesangial cell lysis and proliferation on glomerular hemodynamics in the rat. To elucidate...
Effect of mesangial cell lysis and proliferation on glomerular hemodynamics in the rat. To elucidate...
AbstractGroup II phospholipase A2 (PLA2) is a mediator of inflammation in various disease including ...
AbstractEvidence suggests an important role of elevated serum lipoproteins in the progression of ren...
AbstractAristolochic acid (AA) is considered to be a causative agent for progressive interstitial re...
Lysophosphatidic acid-induced proliferation in opossum kidney proximal tubular cells: Role of PI 3-k...
Purpose: Excess proliferation and extracellular matrix (ECM) accumulation of mesenchymal cells such ...
Aristolochic acid (AA) is considered to be a causative agent for progressive interstitial renal fibr...
Regulation of mesangial cell proliferation. Regardless of the source of injury, an imbalance in the ...
PURPOSE: Excess proliferation of mesenchymal cells such as vascular smooth muscle cells and glomerul...
Dual effect of lysophosphatidic acid on proliferation of glomerular mesangial cells. Among the varie...
Lysophosphatidylcholine induces platelet-derived growth factor gene expression in a cultured human g...
Prostaglandins and rat mesangial cell proliferation. Arachidonate metabolites modulate glomerular me...
Background. Lipoprotein abnormalities are considered to accelerate glomerular injury in various form...
Lysophosphatidic acid-induced proliferation in opossum kidney proximal tubular cells: Role of PI 3-k...
Effect of mesangial cell lysis and proliferation on glomerular hemodynamics in the rat. To elucidate...
Effect of mesangial cell lysis and proliferation on glomerular hemodynamics in the rat. To elucidate...
AbstractGroup II phospholipase A2 (PLA2) is a mediator of inflammation in various disease including ...
AbstractEvidence suggests an important role of elevated serum lipoproteins in the progression of ren...
AbstractAristolochic acid (AA) is considered to be a causative agent for progressive interstitial re...
Lysophosphatidic acid-induced proliferation in opossum kidney proximal tubular cells: Role of PI 3-k...
Purpose: Excess proliferation and extracellular matrix (ECM) accumulation of mesenchymal cells such ...
Aristolochic acid (AA) is considered to be a causative agent for progressive interstitial renal fibr...
Regulation of mesangial cell proliferation. Regardless of the source of injury, an imbalance in the ...
PURPOSE: Excess proliferation of mesenchymal cells such as vascular smooth muscle cells and glomerul...