The cells in the renal medulla protect themselves from the extracellular hypertonicity in that region of the kidney by accumulating large amounts of sorbitol, inositol, grycerophosphoryl-choline, and betaine. The system is uniquely active in this part of the body, but it represents a throwback to primitive mechanisms by which cells in virtually all organisms, including bacteria, yeasts, plants, and lower animals counteract water stress. In this brief review, we summarize how these "compatible organic osmolytes " help the renal medullary cells to survive, the mechanisms by which the organic osmolytes are accumulated, and how the accumulation is controlled to adjust for changing extracellular NaCl and urea concentrations. The compat...
SYNOPSIS. Organic osmolytes are small solutes used by cells of numerous water-stressed organisms and...
This paper briefly reviews some aspects of the research on organic solutes in osmolarity control and...
Concentration of the urine is achieved by osmotic equilibrium of the collecting duct fluid with the ...
Coordinate regulation of organic osmolytes in renal cells. Adaptation of cells to prolonged hyperton...
When the renal medulla becomes hypertonic in association with the formation of concentrated urine, t...
Coordinate regulation of organic osmolytes in renal cells. Adaptation of cells to prolonged hyperton...
SYNOPSIS. In the mammalian kidney renal medullary cells use organic osmolytes such as sorbitol, myo-...
The kidney medulla of mammals undergoes large changes in tonicity in parallel with the tonicity of t...
Organic osmolytes in human and other mammalian kidneys. Osmotically-active organic solutes, or osmol...
In the mammalian kidney renal medullary cells use organic osmolytes such as sorbitol, myo-inositol, ...
Organic osmolytes in human and other mammalian kidneys. Osmotically-active organic solutes, or osmol...
AbstractThe kidney uses mixtures of five osmolytes to counter the stress induced by high urea and Na...
Several osmotically–active mammalian kidney organic solutes have been identified in the medulla of m...
Hypertonicity-induced accumulation of organic osmolytes in papillary interstitial cells.BackgroundMe...
The osmolality of the mammalian kidney medulla is very high. The high osmolality provides the drivin...
SYNOPSIS. Organic osmolytes are small solutes used by cells of numerous water-stressed organisms and...
This paper briefly reviews some aspects of the research on organic solutes in osmolarity control and...
Concentration of the urine is achieved by osmotic equilibrium of the collecting duct fluid with the ...
Coordinate regulation of organic osmolytes in renal cells. Adaptation of cells to prolonged hyperton...
When the renal medulla becomes hypertonic in association with the formation of concentrated urine, t...
Coordinate regulation of organic osmolytes in renal cells. Adaptation of cells to prolonged hyperton...
SYNOPSIS. In the mammalian kidney renal medullary cells use organic osmolytes such as sorbitol, myo-...
The kidney medulla of mammals undergoes large changes in tonicity in parallel with the tonicity of t...
Organic osmolytes in human and other mammalian kidneys. Osmotically-active organic solutes, or osmol...
In the mammalian kidney renal medullary cells use organic osmolytes such as sorbitol, myo-inositol, ...
Organic osmolytes in human and other mammalian kidneys. Osmotically-active organic solutes, or osmol...
AbstractThe kidney uses mixtures of five osmolytes to counter the stress induced by high urea and Na...
Several osmotically–active mammalian kidney organic solutes have been identified in the medulla of m...
Hypertonicity-induced accumulation of organic osmolytes in papillary interstitial cells.BackgroundMe...
The osmolality of the mammalian kidney medulla is very high. The high osmolality provides the drivin...
SYNOPSIS. Organic osmolytes are small solutes used by cells of numerous water-stressed organisms and...
This paper briefly reviews some aspects of the research on organic solutes in osmolarity control and...
Concentration of the urine is achieved by osmotic equilibrium of the collecting duct fluid with the ...