Objective:
Central diabetes insipidus can occur in the setting of primary or metastatic tumors that disrupt the hypothalamic-pituitary axis. Usual treatment consists of water intake to replace ongoing fluid losses and desmopressin administration aimed at decreasing the urine output to enable maintenance of eunatremia without polyuria. Marked derangement in plasma sodium concentration can occur when high-volume intravenous fluid administration is required during chemotherapy to prevent nephrotoxicity, particularly if obligate fluid intake exceeds the total daily fluid intake necessary to maintain eunatremia.
Methods:
We developed a protocol for a rapidly titratable low-dose continuous intravenous arginine vasopressin infusion to maintain eunatremia in patients with central diabetes insipidus during periods of obligate fluid intake.
Results:
We successfully maintained eunatremia in 2 patients with central nervous system lymphoma who underwent several cycles of obligate intravenous fluid administration with 5% dextrose in 0.45% sodium chloride for chemotherapy.
Conclusion:
Obligate fluid administration can result in dangerous and severe fluctuations in plasma sodium concentration in patients with central diabetes insipidus receiving conventional desmopressin therapy. The use of a rapidly titratable low-dose continuous vasopressin infusion successfully maintained eunatremia in this setting. This protocol can be replicated to prevent the wide and potentially dangerous fluctuations in plasma sodium concentration that can occur in patients with central diabetes insipidus who require high-volume intravenous fluid administration. This protocol has not been assessed among patients with impaired renal function and, thus, may not be generalizable to this population. (AACE Clinical Case Rep. 2018;4:e487-e492)
Clinicians should utilize these recommendations in the context of each individual patient, taking into consideration patient-specific factors and severity of illness. Future pharmacokinetic research correlating plasma and intracellular concentrations of NRTIs during CVVH is warranted to elucidate appropriate dosing.
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