Aberrant proliferation of mesangial cells (MCs) is a key finding in progressive glomerular disease. TH1177 is a small molecule that has been shown to inhibit low-voltage activated T-type Ca2+ channels (TCCs). The current study investigates the effect of TH1177 on MC proliferation in vitro and in vivo. The effect of Ca2+ channel inhibition on primary rat MC proliferation in vitro was studied using the microculture tetrazolium assay and by measuring bromodeoxyuridine incorporation. In vivo, rats with Thy1 nephritis were treated with TH1177 or vehicle. Glomerular injury and average glomerular cell number were determined in a blinded fashion. Immunostaining for Ki-67 and phosphorylated ERK were also performed. The expression of TCC isoforms in ...
LF15-0195 prevents the induction and inhibits the progression of rat anti-GBM disease.BackgroundLF15...
An anti-CD5 monoclonal antibody ameliorates proteinuria and glomerular lesions in rat mesangioprolif...
Limitation of podocyte proliferation improves renal function in experimental crescentic glomerulonep...
Aberrant proliferation of mesangial cells (MCs) is a key finding in progressive glomerular disease. ...
Background: Aberrant glomerular mesangial cell (MC) proliferation is a common finding in renal disea...
Inhibitory effect of calcium channel blockers on human mesangial cell growth: Evidence for actions i...
T-type calcium channel blockers have been previously shown to protect glomeruli from hypertension by...
Pentoxifylline attenuates experimental mesangial proliferative glomerulonephritis.BackgroundAccumula...
Pharmacological blockade of the N-and L-type calcium channel lessens renal injury in kidney disease ...
Selective lymphocyte inhibition by FTY720 slows the progressive course of chronic anti-thy 1 glomeru...
OBJECTIVE: K(Ca)3.1 channel participates in many important cellular functions. This study planned to...
AbstractCalcium channels have been shown to play an important role in the pathogenesis of diabetic n...
Abstract To explore the role of suppressor of cytokine signaling‐3 (SOCS‐3) in mesangial proliferati...
Stimulation of soluble guanylate cyclase slows progression in anti-thy1-induced chronic glomeruloscl...
According to the Centers for Disease Control and Prevention, one in 10 American adults, has some lev...
LF15-0195 prevents the induction and inhibits the progression of rat anti-GBM disease.BackgroundLF15...
An anti-CD5 monoclonal antibody ameliorates proteinuria and glomerular lesions in rat mesangioprolif...
Limitation of podocyte proliferation improves renal function in experimental crescentic glomerulonep...
Aberrant proliferation of mesangial cells (MCs) is a key finding in progressive glomerular disease. ...
Background: Aberrant glomerular mesangial cell (MC) proliferation is a common finding in renal disea...
Inhibitory effect of calcium channel blockers on human mesangial cell growth: Evidence for actions i...
T-type calcium channel blockers have been previously shown to protect glomeruli from hypertension by...
Pentoxifylline attenuates experimental mesangial proliferative glomerulonephritis.BackgroundAccumula...
Pharmacological blockade of the N-and L-type calcium channel lessens renal injury in kidney disease ...
Selective lymphocyte inhibition by FTY720 slows the progressive course of chronic anti-thy 1 glomeru...
OBJECTIVE: K(Ca)3.1 channel participates in many important cellular functions. This study planned to...
AbstractCalcium channels have been shown to play an important role in the pathogenesis of diabetic n...
Abstract To explore the role of suppressor of cytokine signaling‐3 (SOCS‐3) in mesangial proliferati...
Stimulation of soluble guanylate cyclase slows progression in anti-thy1-induced chronic glomeruloscl...
According to the Centers for Disease Control and Prevention, one in 10 American adults, has some lev...
LF15-0195 prevents the induction and inhibits the progression of rat anti-GBM disease.BackgroundLF15...
An anti-CD5 monoclonal antibody ameliorates proteinuria and glomerular lesions in rat mesangioprolif...
Limitation of podocyte proliferation improves renal function in experimental crescentic glomerulonep...