The proximal tubule is responsible for the reabsorption of 80% of the filtered load of bicarbonate in adults. Proximal tubule bicarbonate reabsorption is affected by a number of hormones, acid-base balance, and the extracellular fluid volume status [1]. The adult proximal tubule thus plays a central role in acid-base homeostasis. The mechanisms and regulation of proximal tubule acidification have been well characterized at the whole animal and tubular level [1]. Recent advances in cellular and molecular biology have provided further insights. However, while the neonatal proximal tubule likely also plays a critical role in acid-base homeostasis, relatively little is known about the immature segment.The normal serum bicarbonate concentration ...
Acid-base homeostasis is one of the most tightly regulated systems in the body. Maintaining the acid...
Effects of thyroid hormone on the neonatal renal cortical Na+/H+antiporter. The neonatal proximal tu...
On the mechanism of bicarbonate exit from renal proximal tubular cells. We compare here the results ...
The proximal tubule is responsible for the reabsorption of 80% of the filtered load of bicarbonate i...
A theoretical model was developed to examine the role of physical and chemical factors in the contro...
acid-base and extracellular volume status affect absolute proximal bicar-bonate reabsorption. Microp...
Mechanisms of fluid absorption during proximal tubule development. Passive permeation characteristic...
The kidney participates in the maintenance of acid-base homeostasis by 1) reabsorption of the filter...
Summary. After acute administration of ammonium chloride, infants 1 to 16 months of age were similar...
Effects of chronic hyperfiltration on proximal tubule bicarbonate transport and cell electrolytes. T...
The role of bicarbonate in proximal tubular sodium chloride transport. Microperfusion studies of sin...
The present in vitro microperfusion study examined apical membrane Na+/H+ antiporter and basolateral...
It is accepted that bicarbonate reabsorption in the proximal tubule is mediated by H+ secretion, but...
The kidneys' major functions in regulating the acid-base balance of body fluids are (1) to conserve ...
Renal function is low in infancy, even when the appropriate correction is made for the small body si...
Acid-base homeostasis is one of the most tightly regulated systems in the body. Maintaining the acid...
Effects of thyroid hormone on the neonatal renal cortical Na+/H+antiporter. The neonatal proximal tu...
On the mechanism of bicarbonate exit from renal proximal tubular cells. We compare here the results ...
The proximal tubule is responsible for the reabsorption of 80% of the filtered load of bicarbonate i...
A theoretical model was developed to examine the role of physical and chemical factors in the contro...
acid-base and extracellular volume status affect absolute proximal bicar-bonate reabsorption. Microp...
Mechanisms of fluid absorption during proximal tubule development. Passive permeation characteristic...
The kidney participates in the maintenance of acid-base homeostasis by 1) reabsorption of the filter...
Summary. After acute administration of ammonium chloride, infants 1 to 16 months of age were similar...
Effects of chronic hyperfiltration on proximal tubule bicarbonate transport and cell electrolytes. T...
The role of bicarbonate in proximal tubular sodium chloride transport. Microperfusion studies of sin...
The present in vitro microperfusion study examined apical membrane Na+/H+ antiporter and basolateral...
It is accepted that bicarbonate reabsorption in the proximal tubule is mediated by H+ secretion, but...
The kidneys' major functions in regulating the acid-base balance of body fluids are (1) to conserve ...
Renal function is low in infancy, even when the appropriate correction is made for the small body si...
Acid-base homeostasis is one of the most tightly regulated systems in the body. Maintaining the acid...
Effects of thyroid hormone on the neonatal renal cortical Na+/H+antiporter. The neonatal proximal tu...
On the mechanism of bicarbonate exit from renal proximal tubular cells. We compare here the results ...