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Altered renal handling of electrolytes in a child with central diabetes insipidus (CDI).

Y Sebsibe, Y Elias, Lillian M. Zerihun

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Abstract

A 12-year-old female child, with a history of polyuria and polydipsia of about three years duration, was admitted to Ethio-Swedish Paediatric Hospital, in Addis Abeba. Urine output in 24 hours averaged 5-6 litres, with a frequency of 15 times during the day and 7-8 times during the night. Random urine analysis showed an osmolality of 60 mOsm/kg, Na+ 27.1 mmol/L and K+ was 7.6 mmol/L. Basal plasma osmolality was 313 mOsm/kg with Na+ being 156 mmol/L and K+ 4.06 mmol/L. Water deprivation for nine hours failed to produce a concentrated urine, which was only 138 mOsm/kg at the end of the test, with a corresponding plasma osmolality of 336 mOsm/kg. After nine hours of water deprivation, urine Na+ increased from 27.1 to 37.3 mmol/L while K+ increased from 7.1 to 18.7 mmol/L. Lypressin, a vasopressin analogue, at a concentration of 0.3 IU/kg injected intramuscularly, resulted in a marked increase in urine osmolality to 586 mOsm/kg within two hours, associated with relief of symptoms. Urinary excretion of K+ was markedly increased during the vasopressin test while Na+ excretion was little affected. A case of central diabetes insipidus of undefined etiology is presented and the possibility of altered renal handling of electrolytes and an abnormal response to vasopressin in such cases is noted. The problem of management and the currently available treatment options are summarized.

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What this paper is about

A 12-year-old female child, with a history of polyuria and polydipsia of about three years duration, was admitted to Ethio-Swedish Paediatric Hospital, in Addis Abeba. Urine output in 24 hours averaged 5-6 litres, with a frequency of 15 times during the day and 7-8 times during the night. Random urine analysis showed an osmolality of 60 mOsm/kg, Na+ 27.1 mmol/L and K+ was 7.6 mmol/L. Basal plasma osmolality was 313 mOsm/kg with Na+ being 156 mmol/L and K+ 4.06 mmol/L. Water deprivation for nine hours failed to produce a concentrated urine, which was only 138 mOsm/kg at the end of the test, with a corresponding plasma osmolality of 336 mOsm/kg. After nine hours of water deprivation, urine Na+ increased from 27.1 to 37.3 mmol/L while K+ increased from 7.1 to 18.7 mmol/L. Lypressin, a vasopressin analogue, at a concentration of 0.3 IU/kg injected intramuscularly, resulted in a marked increase in urine osmolality to 586 mOsm/kg within two hours, associated with relief of symptoms. Urinary excretion of K+ was markedly increased during the vasopressin test while Na+ excretion was little affected. A case of central diabetes insipidus of undefined etiology is presented and the possibility of altered renal handling of electrolytes and an abnormal response to vasopressin in such cases is noted. The problem of management and the currently available treatment options are summarized.

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Available abstract

A 12-year-old female child, with a history of polyuria and polydipsia of about three years duration, was admitted to Ethio-Swedish Paediatric Hospital, in Addis Abeba. Urine output in 24 hours averaged 5-6 litres, with a frequency of 15 times during the day and 7-8 times during the night. Random urine analysis showed an osmolality of 60 mOsm/kg, Na+ 27.1 mmol/L and K+ was 7.6 mmol/L. Basal plasma osmolality was 313 mOsm/kg with Na+ being 156 mmol/L and K+ 4.06 mmol/L. Water deprivation for nine hours failed to produce a concentrated urine, which was only 138 mOsm/kg at the end of the test, with a corresponding plasma osmolality of 336 mOsm/kg. After nine hours of water deprivation, urine Na+ increased from 27.1 to 37.3 mmol/L while K+ increased from 7.1 to 18.7 mmol/L. Lypressin, a vasopressin analogue, at a concentration of 0.3 IU/kg injected intramuscularly, resulted in a marked increase in urine osmolality to 586 mOsm/kg within two hours, associated with relief of symptoms. Urinary excretion of K+ was markedly increased during the vasopressin test while Na+ excretion was little affected. A case of central diabetes insipidus of undefined etiology is presented and the possibility of altered renal handling of electrolytes and an abnormal response to vasopressin in such cases is noted. The problem of management and the currently available treatment options are summarized.

Key concepts: Osmole, Urine osmolality, Polyuria, Medicine, Diabetes insipidus, Vasopressin, Plasma osmolality, Urine

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Altered renal handling of electrolytes in a child with central diabetes insipidus (CDI). — Research Paper | ScholarLens