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A Physiological Analysis of Hyponatremia: Implications for Patients on Peritoneal Dialysis
Author(s) -
Cherney David Z.,
Zevallos Gonzalo,
Oreopoulos Dimitrios,
Halperin Mitchell L.
Publication year - 2001
Publication title -
peritoneal dialysis international
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.79
H-Index - 83
eISSN - 1718-4304
pISSN - 0896-8608
DOI - 10.1177/089686080102100103
Subject(s) - hyponatremia , extracellular fluid , peritoneal dialysis , medicine , free water clearance , endocrinology , vasopressin , renal function , fluid compartments , body water , mannitol , chemistry , extracellular , body weight , biochemistry
The basis for hyponatremia is a negative balance for sodium (Na + ) plus potassium (K + ) and/or a positive balance for water. In patients with normal renal function, vasopressin is needed to prevent the excretion of electrolyte-free water. Vasopressin is not important when there is little residual renal function. If hyponatremia is accompanied by a quantitatively appropriate gain in weight, this implies that a gain of electrolyte-free water was the basis for hyponatremia. In the absence of this weight gain, a loss of salts is to be suspected. If the extracellular fluid (ECF) volume is obviously low, hyponatremia is due to a deficit of NaCl, unless there is a deficit of K + . With a KCl deficit and a contracted ECF volume, there should also be a large shift of Na + into cells, so metabolic alkalosis would not be an expected finding. In contrast, those patients with no change in weight who have a normal or expanded ECF volume are subdivided into those with a gain of solutes restricted to the ECF compartment (glucose, mannitol), or those with a deficit of solutes of intracellular fluid origin, which implies that a catabolic state (malnutrition) may be present.

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