Organ hypertrophy is often found to be associated with changes in the expression of caveolins and altered density of caveolae in the membrane. A plethora of signalling intermediaries are associated with caveolae and loss of caveolae has profound effects on contractility of the urinary bladder. We hypothesized that smooth muscle hypertrophy caused by bladder outflow obstruction (BOO) might lead to an altered caveola density with consequences for contractile regulation. Rat BOO for 6weeks caused a 2.56-fold increase in the number of smooth muscle caveolae per μm membrane. No changes in the expression of caveolin-1 or cavin-1, normalized to β-actin were seen, but membrane area per unit muscle volume dropped to 0.346. Hypertrophy was associated...
We investigated the contribution of the duration of overdistention (DOD) to rat bladder function and...
Purpose The purposes of this study were to investigate the effect of cyclophosphamide (CYP)-induced ...
Abstract Background Cell adhesion molecules (CAMs) are essential for main...
Purpose This study was designed to investigate the effect of detrusor overactivity induced by partia...
Caveolae and lipid rafts are plasma membrane microdomains that are considered to play a role in cell...
Hypertrophy of rat urinary bladder smooth muscle was induced by partial urethral obstruction. Bladde...
Voiding is mediated by muscarinic receptors in urinary bladder smooth muscle cells. Lipid rafts and ...
Objective. To explore whether infravesical outlet obstruction is associated with alterations in calc...
Caveolae are membrane invaginations present in a variety of cell types. Formation of caveolae depend...
Urological problems can be caused by diseases that affect the bladder wall and its innervation. Cont...
Cavins belong to a family of proteins that contribute to the formation of caveolae, which are membra...
PurposeThe purposes of this study were to investigate the effect of hormonal alterations on the expr...
Median micturition volume decreased early after partial outlet obstruction, 24 hrs total obstruction...
Purpose: Autonomous bladder activity can take the form of localized micromotions (MMs), suggesting t...
Partial bladder outlet obstruction in the rabbit produces changes in bladder function similar to tho...
We investigated the contribution of the duration of overdistention (DOD) to rat bladder function and...
Purpose The purposes of this study were to investigate the effect of cyclophosphamide (CYP)-induced ...
Abstract Background Cell adhesion molecules (CAMs) are essential for main...
Purpose This study was designed to investigate the effect of detrusor overactivity induced by partia...
Caveolae and lipid rafts are plasma membrane microdomains that are considered to play a role in cell...
Hypertrophy of rat urinary bladder smooth muscle was induced by partial urethral obstruction. Bladde...
Voiding is mediated by muscarinic receptors in urinary bladder smooth muscle cells. Lipid rafts and ...
Objective. To explore whether infravesical outlet obstruction is associated with alterations in calc...
Caveolae are membrane invaginations present in a variety of cell types. Formation of caveolae depend...
Urological problems can be caused by diseases that affect the bladder wall and its innervation. Cont...
Cavins belong to a family of proteins that contribute to the formation of caveolae, which are membra...
PurposeThe purposes of this study were to investigate the effect of hormonal alterations on the expr...
Median micturition volume decreased early after partial outlet obstruction, 24 hrs total obstruction...
Purpose: Autonomous bladder activity can take the form of localized micromotions (MMs), suggesting t...
Partial bladder outlet obstruction in the rabbit produces changes in bladder function similar to tho...
We investigated the contribution of the duration of overdistention (DOD) to rat bladder function and...
Purpose The purposes of this study were to investigate the effect of cyclophosphamide (CYP)-induced ...
Abstract Background Cell adhesion molecules (CAMs) are essential for main...