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1.
Ann Intensive Care ; 13(1): 18, 2023 Mar 13.
Article in English | MEDLINE | ID: mdl-36907976

ABSTRACT

BACKGROUND: The extent of the consequences of an episode of severe acute kidney injury (AKI) on long-term outcome of critically ill patients remain debated. We conducted a prospective follow-up of patients included in a large multicenter clinical trial of renal replacement therapy (RRT) initiation strategy during severe AKI (the Artificial Kidney Initiation in Kidney Injury, AKIKI) to investigate long-term survival, renal outcome and health related quality of life (HRQOL). We also assessed the influence of RRT initiation strategy on these outcomes. RESULTS: Follow-up of patients extended from 60 days to a median of 3.35 years [interquartile range (IQR), 1.89 to 4.09] after the end of initial study. Of the 619 patients included in the AKIKI trial, 316 survived after 60 days. The overall survival rate at 3 years from inclusion was 39.4% (95% CI 35.4 to 43.4). A total of 46 patients (on the 175 with available data on long-term kidney function) experienced worsening of renal function (WRF) at the time of follow-up [overall incidence of 26%, cumulative incidence at 4 years: 20.6% (CI 95% 13.0 to 28.3)]. Fifteen patients required chronic dialysis (5% of patients who survived after day 90). Among the 226 long-term survivors, 80 (35%) answered the EQ-5D questionnaire. The median index value reported was 0.67 (IQR 0.40 to 1.00) indicating a noticeable alteration of quality of life. Initiation strategy for RRT had no effect on any long-term outcome. CONCLUSION: Severe AKI in critically ill patients was associated with a high proportion of death within the first 2 months but less so during long-term follow-up. A quarter of long-term survivors experienced a WRF and suffered from a noticeable impairment of quality of life. Renal replacement therapy initiation strategy was not associated with mortality outcome.

2.
Semin Cardiothorac Vasc Anesth ; 25(1): 46-50, 2021 Mar.
Article in English | MEDLINE | ID: mdl-33054611

ABSTRACT

The coronavirus disease 2019 (COVID-19) may lead to an acute respiratory distress syndrome by an inappropriate cytokine response and may predispose to a prothrombotic state through multiple pathways. Both can complicate the management of cardiac surgery with cardiopulmonary bypass, which is known to activate the hemostatic system and to exacerbate systemic inflammatory response. Little is known about the impact of cardiac surgery with cardiopulmonary bypass on viral pneumonia, particularly with the new coronavirus. In this article, we describe the case of a diabetic patient with COVID-19 and a concomitant 3-vessel disease with a formal indication for surgical revascularization, who unexpectedly presented with a high heparin resistance during cardiopulmonary bypass. Emphasis is placed on the importance of multidisciplinary team discussions before surgery, on the thorough preoperative assessment, and on the perioperative management, particularly regarding mechanical ventilation and anticoagulation.


Subject(s)
COVID-19/complications , Cardiopulmonary Bypass/methods , Percutaneous Coronary Intervention/methods , SARS-CoV-2 , Humans , Male , Middle Aged
5.
Ann Intensive Care ; 9(1): 2, 2019 Jan 05.
Article in English | MEDLINE | ID: mdl-30612249

ABSTRACT

BACKGROUND: Although outcomes of critically ill patients with haematological malignancies (HMs) have been fully investigated in terms of organ failure and mortality, data are scarce on health-related quality of life (HRQOL) in this population. We aim to assess post-intensive care unit (ICU) burden and HRQOL of critically ill patients with HMs and to identify risk factors for quality-of-life (QOL) impairment. RESULTS: In total, 1011 patients with HMs who required ICU admission in 17 ICUs in France and Belgium were included in the study; 278 and 117 patients were evaluated for QOL at 3 months and 1 year, respectively, after ICU discharge. HRQOL was determined by applying the interview form of the Short Form 36 (SF-36) questionnaire. Psychological distress symptoms were evaluated using the Hospital Anxiety Depression Score (HADS) and the Impact of Event Scale (IES). In-hospital mortality rates at 3 months and 1 year were, respectively, 39.1, 50.7 and 57.2%, respectively. At 3 months, median [IQR] physical and mental component summary scores (PCS and MCS) (SF-36) were 37 [28-46] and 51 [45-58], respectively. PCS was lower in ICU patients with HMs when compared to general ICU septic patients (52 [5-13], p = 0.00001). The median combined HAD score was 8 [5-13], and the median IES score was 8 [3-16]. However, recovery during the first year after ICU discharge was not consistent in all dimensions of HRQOL. Three months after ICU discharge, the maximum daily Sequential Organ Failure Assessment score and status of the underlying malignancy at ICU admission were significantly associated with MCS impairment (- 0.54 points [95% CI - 0.99; - 0.1], p = 0.018 and - 4.83 points [95% CI - 8.44; - 1.22], p = 0.009, respectively). CONCLUSION: HRQOL is strongly impaired in critically ill patients with HMs at 3 months and 1 year after ICU discharge. Organ failure and disease status are strongly associated with QOL. The kinetic evaluation of QOL at 3 months and 1 year offers the opportunity to focus on QOL aspects that may be improved by therapeutic interventions during the first year after ICU discharge.

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