AbstractPeritoneal dialysis (PD) is an established mode of renal replacement therapy, based on the exchange of fluid and solutes between blood in peritoneal capillaries and a dialysate that has been introduced in the peritoneal cavity. The dialysis involves diffusive and convective transports and osmosis through the highly vascularized peritoneal membrane. Computer simulations predicted that the membrane contains ultrasmall pores (radius < 3 Å) responsible for the transport of solute-free water across the capillary endothelium during crystalloid osmosis. The distribution of the water channel aquaporin-1 (AQP1), as well as its molecular structure ensuring an exquisite selectivity for water perfectly fit with the characteristics of the ultras...
Water transport during peritoneal dialysis (PD) requires ultrasmall pores in the capillary endotheli...
The water channel aquaporin-1 (AQP1) is the molecular counterpart of the ultrasmall pore responsible...
We previously showed that mesothelial cells in human peritoneum express the water channel aquaporin ...
PD (peritoneal dialysis) is an established mode of renal replacement therapy, based on the exchange ...
AbstractPeritoneal dialysis (PD) is an established mode of renal replacement therapy, based on the e...
Peritoneal dialysis involves diffusive and convective transports and osmosis through the highly vasc...
Peritoneal dialysis (PD) is an established mode of renal replacement therapy based on the exchange o...
Peritoneal dialysis involves diffusive and convective transports and osmosis through the highly vasc...
Peritoneal dialysis involves diffusive and convective transport and osmosis through the highly vascu...
Peritoneal dialysis involves diffusive and convective transport and osmosis through the highly vascu...
Peritoneal dialysis involves diffusive and convective transports and osmosis through the highly vasc...
Peritoneal dialysis is the major home-based renal replacement therapy. Survival on peritoneal dialys...
The water channel aquaporin-1 (AQP1) is considered as the molecular counterpart of the ultrasmall po...
The water channel aquaporin-1 (AQP1) is considered as the molecular counterpart of the ultrasmall po...
Peritoneal dialysis represents the major home-based dialysis modality for patients with end-stage re...
Water transport during peritoneal dialysis (PD) requires ultrasmall pores in the capillary endotheli...
The water channel aquaporin-1 (AQP1) is the molecular counterpart of the ultrasmall pore responsible...
We previously showed that mesothelial cells in human peritoneum express the water channel aquaporin ...
PD (peritoneal dialysis) is an established mode of renal replacement therapy, based on the exchange ...
AbstractPeritoneal dialysis (PD) is an established mode of renal replacement therapy, based on the e...
Peritoneal dialysis involves diffusive and convective transports and osmosis through the highly vasc...
Peritoneal dialysis (PD) is an established mode of renal replacement therapy based on the exchange o...
Peritoneal dialysis involves diffusive and convective transports and osmosis through the highly vasc...
Peritoneal dialysis involves diffusive and convective transport and osmosis through the highly vascu...
Peritoneal dialysis involves diffusive and convective transport and osmosis through the highly vascu...
Peritoneal dialysis involves diffusive and convective transports and osmosis through the highly vasc...
Peritoneal dialysis is the major home-based renal replacement therapy. Survival on peritoneal dialys...
The water channel aquaporin-1 (AQP1) is considered as the molecular counterpart of the ultrasmall po...
The water channel aquaporin-1 (AQP1) is considered as the molecular counterpart of the ultrasmall po...
Peritoneal dialysis represents the major home-based dialysis modality for patients with end-stage re...
Water transport during peritoneal dialysis (PD) requires ultrasmall pores in the capillary endotheli...
The water channel aquaporin-1 (AQP1) is the molecular counterpart of the ultrasmall pore responsible...
We previously showed that mesothelial cells in human peritoneum express the water channel aquaporin ...