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- Shidasp Siami, Andrea Polito, Raphael Porcher, Tarik Hissem, Anne Blanchard, Catherine Boucly, Robert Carlier, Djillali Annane, Jean-Philippe Haymann, and Tarek Sharshar.
- Department of Intensive Care Medicine, Sud Essonne Hospital, Etampes, France.
- Plos One. 2013 Jan 1;8(11):e80190.
ObjectiveVasopressin (AVP) secretion during an osmotic challenge is frequently altered in the immediate post-acute phase of septic shock. We sought to determine if this response is still altered in patients recovering from septic shock.DesignProspective interventional study.SettingIntensive care unit (ICU) at Raymond Poincaré and Etampes Hospitals.PatientsNormonatremic patients at least 5 days post discontinuation of catecholamines given for a septic shock.InterventionOsmotic challenge involved infusing 500 mL of hypertonic saline solution (with cumulative amount of sodium not exceeding 24 g) over 120 minutes.Measurements And Main ResultsPlasma AVP levels were measured 15 minutes before the infusion and then every 30 minutes for two hours. Non-responders were defined as those with a slope of the relation between AVP and plasma sodium levels less than < 0.5 ng/mEq. Among the 30 included patients, 18 (60%) were non-responders. Blood pressure and plasma sodium and brain natriuretic peptide levels were similar in both responders and non-responders during the course of the test. Critical illness severity, hemodynamic alteration, electrolyte disturbances, treatment and outcome did not differ between the two groups. Responders had more severe gas exchange abnormality. Thirst perception was significantly diminished in non-responders. The osmotic challenge was repeated in 4 non-responders several months after discharge and the abnormal response persisted.ConclusionMore than half of patients recovering from septic shock have an alteration of osmoregulation characterised by a dramatic decrease in vasopressin secretion and thirst perception during osmotic challenge. The mechanisms of this alteration but also of the relationship between haematosis and normal response remain to be elucidated.
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