AbstractUrinary bladder undergoes dramatic volume changes during filling and voiding cycles. In the bladder the luminal surface of terminally differentiated urothelial umbrella cells is almost completely covered by plaques. These plaques (500 to 1000 nm) are made of a family of proteins called uroplakins that are known to form a tight barrier to prevent leakage of water and solutes. Electron micrographs from previous studies show these plaques to be interconnected by hinge regions to form structures that appear rigid, but these same structures must accommodate large changes in cell shape during voiding and filling cycles. To resolve this paradox, we measured the stiffness of the intact, living urothelial apical membrane and found it to be h...
Urothelial surface is covered by numerous plaques (consisting of asymmetric unit membranes or AUM) t...
Mechanical forces affect many cellular functions. How cells respond to mechanical stimuli and how th...
The apical surface of mammalian bladder urothelium is covered by large (500-1000 nm) two-dimensional...
AbstractUrinary bladder undergoes dramatic volume changes during filling and voiding cycles. In the ...
Abstract. The luminal surface of mammalian uro-thelium is covered with numerous plaques (also known ...
Urothelial plaques are specialized membrane domains in urothelial superficial (umbrella) cells, comp...
Much of the lower urinary tract, including the bladder, is lined by a stratified urothelium forming ...
The primary function of the urothelium is to provide the tightest and most impermeable barrier in th...
The bladder is a complex organ that is highly adaptive to its mechanical environment. The umbrella c...
Urothelium covers the inner surfaces of the renal pelvis, ureter, bladder, and prostatic urethra. Al...
The formation of fusiform vesicles (FVs) is one of the most distinctive features in the urothelium o...
Uroplakins (UPs) are major differentiation products of urothelial umbrella cells and play important ...
<p>Normal mouse bladder was fixed by high pressure freezing and freeze-substitution (<a href="http:/...
<div><p>The formation of fusiform vesicles (FVs) is one of the most distinctive features in the urot...
The studies on membrane dynamics in urinary bladder umbrella cells were focused on proteins as impor...
Urothelial surface is covered by numerous plaques (consisting of asymmetric unit membranes or AUM) t...
Mechanical forces affect many cellular functions. How cells respond to mechanical stimuli and how th...
The apical surface of mammalian bladder urothelium is covered by large (500-1000 nm) two-dimensional...
AbstractUrinary bladder undergoes dramatic volume changes during filling and voiding cycles. In the ...
Abstract. The luminal surface of mammalian uro-thelium is covered with numerous plaques (also known ...
Urothelial plaques are specialized membrane domains in urothelial superficial (umbrella) cells, comp...
Much of the lower urinary tract, including the bladder, is lined by a stratified urothelium forming ...
The primary function of the urothelium is to provide the tightest and most impermeable barrier in th...
The bladder is a complex organ that is highly adaptive to its mechanical environment. The umbrella c...
Urothelium covers the inner surfaces of the renal pelvis, ureter, bladder, and prostatic urethra. Al...
The formation of fusiform vesicles (FVs) is one of the most distinctive features in the urothelium o...
Uroplakins (UPs) are major differentiation products of urothelial umbrella cells and play important ...
<p>Normal mouse bladder was fixed by high pressure freezing and freeze-substitution (<a href="http:/...
<div><p>The formation of fusiform vesicles (FVs) is one of the most distinctive features in the urot...
The studies on membrane dynamics in urinary bladder umbrella cells were focused on proteins as impor...
Urothelial surface is covered by numerous plaques (consisting of asymmetric unit membranes or AUM) t...
Mechanical forces affect many cellular functions. How cells respond to mechanical stimuli and how th...
The apical surface of mammalian bladder urothelium is covered by large (500-1000 nm) two-dimensional...