Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 20 de 114
Filter
Add more filters

Country/Region as subject
Publication year range
1.
Am J Respir Crit Care Med ; 209(5): 553-562, 2024 Mar 01.
Article in English | MEDLINE | ID: mdl-38190707

ABSTRACT

Rationale: Lung-protective mechanical ventilation strategies have been proven beneficial in the operating room (OR) and the ICU. However, differential practices in ventilator management persist, often resulting in adjustments of ventilator parameters when transitioning patients from the OR to the ICU. Objectives: To characterize patterns of ventilator adjustments during the transition of mechanically ventilated surgical patients from the OR to the ICU and assess their impact on 28-day mortality. Methods: Hospital registry study including patients undergoing general anesthesia with continued, controlled mechanical ventilation in the ICU between 2008 and 2022. Ventilator parameters were assessed 1 hour before and 6 hours after the transition. Measurements and Main Results: Of 2,103 patients, 212 (10.1%) died within 28 days. Upon OR-to-ICU transition, VT and driving pressure decreased (-1.1 ml/kg predicted body weight [IQR, -2.0 to -0.2]; P < 0.001; and -4.3 cm H2O [-8.2 to -1.2]; P < 0.001). Concomitantly, respiratory rates increased (+5.0 breaths/min [2.0 to 7.5]; P < 0.001), resulting overall in slightly higher mechanical power (MP) in the ICU (+0.7 J/min [-1.9 to 3.0]; P < 0.001). In adjusted analysis, increases in MP were associated with a higher 28-day mortality rate (adjusted odds ratio, 1.10; 95% confidence interval, 1.06-1.14; P < 0.001; adjusted risk difference, 0.7%; 95% confidence interval, 0.4-1.0, both per 1 J/min). Conclusion: During transition of mechanically ventilated patients from the OR to the ICU, ventilator adjustments resulting in higher MP were associated with a greater risk of 28-day mortality.


Subject(s)
Operating Rooms , Ventilators, Mechanical , Humans , Respiration, Artificial , Death , Intensive Care Units
2.
BMC Anesthesiol ; 24(1): 181, 2024 May 21.
Article in English | MEDLINE | ID: mdl-38773386

ABSTRACT

BACKGROUND: Endotracheal intubation is challenging during cardiopulmonary resuscitation, and video laryngoscopy has showed benefits for this procedure. The aim of this study was to compare the effectiveness of various intubation approaches, including the bougie first, preloaded bougie, endotracheal tube (ETT) with stylet, and ETT without stylet, on first-attempt success using video laryngoscopy during chest compression. METHODS: This was a randomized crossover trial conducted in a general tertiary teaching hospital. We included anesthesia residents in postgraduate year one to three who passed the screening test. Each resident performed intubation with video laryngoscopy using the four approaches in a randomized sequence on an adult manikin during continuous chest compression. The primary outcome was the first-attempt success defined as starting ventilation within a one minute. RESULTS: A total of 260 endotracheal intubations conducted by 65 residents were randomized and analyzed with 65 procedures in each group. First-attempt success occurred in 64 (98.5%), 57 (87.7%), 56 (86.2%), and 46 (70.8%) intubations in the bougie-first, preloaded bougie, ETT with stylet, and ETT without stylet approaches, respectively. The bougie-first approach had a significantly higher possibility of first-attempt success than the preloaded bougie approach [risk ratio (RR) 8.00, 95% confidence interval (CI) 1.03 to 62.16, P = 0.047], the ETT with stylet approach (RR 9.00, 95% CI 1.17 to 69.02, P = 0.035), and the ETT without stylet approach (RR 19.00, 95% CI 2.62 to 137.79, P = 0.004) in the generalized estimating equation logistic model accounting for clustering of intubations operated by the same resident. In addition, the bougie first approach did not result in prolonged intubation or increased self-reported difficulty among the study participants. CONCLUSIONS: The bougie first approach with video laryngoscopy had the highest possibility of first-attempt success during chest compression. These results helped inform the intubation approach during CPR. However, further studies in an actual clinical environment are warranted to validate these findings. TRIAL REGISTRATION: Clinicaltrials.gov; identifier: NCT05689125; date: January 18, 2023.


Subject(s)
Cardiopulmonary Resuscitation , Cross-Over Studies , Intubation, Intratracheal , Laryngoscopy , Manikins , Video Recording , Intubation, Intratracheal/methods , Intubation, Intratracheal/instrumentation , Humans , Laryngoscopy/methods , Laryngoscopy/instrumentation , Cardiopulmonary Resuscitation/methods , Male , Female , Adult , Internship and Residency/methods , Video-Assisted Techniques and Procedures
3.
Crit Care Med ; 51(1): e1-e12, 2023 01 01.
Article in English | MEDLINE | ID: mdl-36351174

ABSTRACT

OBJECTIVES: Long-term prognosis of ICU survivors is a major issue. Severe acidemia upon ICU admission is associated with very high short-term mortality. Since the long-term prognosis of these patients is unknown, we aimed to determine the long-term health-related quality of life and survival of these patients. DESIGN: Post hoc analysis of a multicenter, randomized, controlled trial. SETTING: Twenty-six French ICUs. PATIENTS: Day 28 critically ill survivors admitted with severe acidemia and enrolled in the BICAR-ICU trial. INTERVENTION: Sodium bicarbonate versus no sodium bicarbonate infusion according to the randomization group. MEASUREMENTS AND MAIN RESULTS: The primary outcome was health-related quality of life (HRQoL) measured with the 36-item Short Form Health Survey and the EuroQol 5-D questionnaires. Secondary outcomes were mortality, end-stage renal disease treated with renal replacement therapy or renal transplantation, place of residence, professional status, and ICU readmission. HRQoL was reduced with no significant difference between the two groups. HRQoL was reduced particularly in the role-physical health domain (64/100 ± 41 in the control group and 49/100 ± 43 in the bicarbonate group, p = 0.28), but it was conserved in the emotional domains (96/100 ± 19 in the control group and 86/100 ± 34 in the bicarbonate group, p = 0.44). Forty percent of the survivors described moderate to severe problems walking, and half of the survivors described moderate to severe problems dealing with usual activities. Moderate to severe anxiety or depression symptoms were present in one third of the survivors. Compared with the French general population, HRQoL was decreased in the survivors mostly in the physical domains. The 5-year overall survival rate was 30% with no significant difference between groups. CONCLUSIONS: Long-term HRQoL was decreased in both the control and the sodium bicarbonate groups of the BICAR-ICU trial and was lower than the general population, especially in the physical domains.


Subject(s)
Acidosis , Quality of Life , Humans , Bicarbonates , Intensive Care Units , Survivors , Critical Illness/therapy , Sodium Bicarbonate/therapeutic use
4.
Artif Organs ; 47(6): 999-1006, 2023 Jun.
Article in English | MEDLINE | ID: mdl-36527419

ABSTRACT

BACKGROUND: A higher sodium (Na) dialysate concentration is recommended during renal replacement therapy (RRT) of acute kidney injury (AKI) to improve intradialytic hemodynamic tolerance, but it may lead to Na loading to the patient. We aimed to evaluate Na flux according to Na dialysate and infusate concentrations at 140 and 145 mmol/L during hemodialysis (HD) and hemodiafiltration (HDF). METHODS: Fourteen AKI patients that underwent consecutive HD or HDF sessions with Na dialysate/infusate at 140 and 145 mmol/L were included. Per-dialytic flux of Na was estimated using mean sodium logarithmic concentration including diffusive and convective influx. We compared the flux of sodium between HD140 and 145, and between HDF140 and 145. RESULTS: Nine HD140, ten HDF140, nine HD145, and 11 HDF145 sessions were analyzed. A Na gradient from the dialysate/replacement fluid to the patient was observed with dialysate/infusate Na at 145 mmol/L in both HD and HDF (p = 0.01). The comparison of HD145 to HD140 showed that higher Na dialysate induced a diffusive Na gradient to the patient (163 mmol vs. -25 mmol, p = 0.004) and that of HDF145 to -140 (211 vs. 36 mmol, p = 0.03) as well. Intradialytic hemodynamic tolerance was similar across all RRT sessions. CONCLUSIONS: During both HD and HDF, a substantial Na loading occurred with a Na dialysate and infusate at 145 mmol/L. This Na loading is smaller in HDF with Na dialysate and infusate concentration at 140 mmol/L and inversed with HD140. Clinical and intradialytic hemodynamic tolerance was fair regardless of Na dialysate and infusate.


Subject(s)
Acute Kidney Injury , Hemodiafiltration , Kidney Failure, Chronic , Humans , Hemodiafiltration/adverse effects , Dialysis Solutions/adverse effects , Sodium , Renal Dialysis/adverse effects , Acute Kidney Injury/therapy , Kidney Failure, Chronic/therapy
5.
Am J Respir Crit Care Med ; 205(10): 1169-1178, 2022 05 15.
Article in English | MEDLINE | ID: mdl-35108175

ABSTRACT

Rationale: Diaphragm dysfunction is frequently observed in critically ill patients with difficult weaning from mechanical ventilation. Objectives: To evaluate the effects of temporary transvenous diaphragm neurostimulation on weaning outcome and maximal inspiratory pressure. Methods: Multicenter, open-label, randomized, controlled study. Patients aged ⩾18 years on invasive mechanical ventilation for ⩾4 days and having failed at least two weaning attempts received temporary transvenous diaphragm neurostimulation using a multielectrode stimulating central venous catheter (bilateral phrenic stimulation) and standard of care (treatment) (n = 57) or standard of care (control) (n = 55). In seven patients, the catheter could not be inserted, and in seven others, pacing therapy could not be delivered; consequently, data were available for 43 patients. The primary outcome was the proportion of patients successfully weaned. Other endpoints were mechanical ventilation duration, 30-day survival, maximal inspiratory pressure, diaphragm-thickening fraction, adverse events, and stimulation-related pain. Measurements and Main Results: The incidences of successful weaning were 82% (treatment) and 74% (control) (absolute difference [95% confidence interval (CI)], 7% [-10 to 25]), P = 0.59. Mechanical ventilation duration (mean ± SD) was 12.7 ± 9.9 days and 14.1 ± 10.8 days, respectively, P = 0.50; maximal inspiratory pressure increased by 16.6 cm H2O and 4.8 cm H2O, respectively (difference [95% CI], 11.8 [5 to 19]), P = 0.001; and right hemidiaphragm thickening fraction during unassisted spontaneous breathing was +17% and -14%, respectively, P = 0.006, without correlation with changes in maximal inspiratory pressure. Serious adverse event frequency was similar in both groups. Median stimulation-related pain in the treatment group was 0 (no pain). Conclusions: Temporary transvenous diaphragm neurostimulation did not increase the proportion of successful weaning from mechanical ventilation. It was associated with a significant increase in maximal inspiratory pressure, suggesting reversal of the course of diaphragm dysfunction. Clinical trial registered with www.clinicaltrials.gov (NCT03096639) and the European Database on Medical Devices (CIV-17-06-020004).


Subject(s)
Diaphragm , Phrenic Nerve , Aged , Humans , Maximal Respiratory Pressures , Pain , Respiration, Artificial/adverse effects , Ventilator Weaning
6.
Am J Respir Crit Care Med ; 204(7): 797-806, 2021 10 01.
Article in English | MEDLINE | ID: mdl-34255974

ABSTRACT

Rationale: Prolonged mechanical ventilation is often associated with either a decrease (known atrophy) or an increase (supposed injury) in diaphragmatic thickness. Shear wave elastography is a noninvasive technique that measures shear modulus, a surrogate of tissue stiffness and mechanical properties. Objectives: To describe changes in shear modulus (SM) during the ICU stay and the relationship with alterations in muscle thickness. To perform a comprehensive ultrasound-based characterization of histological and force production changes occurring in the diaphragm. Methods: Translational study using critically ill patients and mechanically ventilated piglets. Serial ultrasound examination of the diaphragm collecting thickness and SM was performed in both patients and piglets. Transdiaphragmatic pressure and diaphragmatic biopsies were collected in piglets. Measurements and Main Results: We enrolled 102 patients, 88 of whom were invasively mechanically ventilated. At baseline, SM was 14.3 ± 4.3 kPa and diaphragm end-expiratory thickness was 2.0 ± 0.5 mm. Decrease or increase by more than 10% from baseline was reported in 86% of the patients for thickness and in 92% of the patients for SM. An increase in diaphragmatic thickness during the stay was associated with a decrease in SM (ß = -9.34 ± 4.41; P = 0.03) after multivariable analysis. In the piglet sample, a decrease in SM over 3 days of mechanical ventilation was associated with loss of force production, slow and fast fiber atrophy, and increased lipid droplets accumulation. Conclusions: Increases in diaphragm thickness during critical illness is associated with decreased tissue stiffness as demonstrated by shear wave ultrasound elastography, consistent with the development of muscle injury and weakness. Clinical trial registered with www.clinicaltrials.gov (NCT03550222).


Subject(s)
Diaphragm/diagnostic imaging , Elasticity Imaging Techniques/methods , Respiration, Artificial/adverse effects , Adult , Animals , Biomechanical Phenomena , Biopsy , Critical Illness , Diaphragm/pathology , Diaphragm/physiopathology , Female , Humans , Male , Middle Aged , Prospective Studies , Qualitative Research , Swine , Translational Research, Biomedical
7.
Crit Care Med ; 48(12): e1300-e1305, 2020 12.
Article in English | MEDLINE | ID: mdl-33009102

ABSTRACT

OBJECTIVES: Mechanical ventilation is associated with primary diaphragmatic dysfunction, also termed ventilator-induced diaphragmatic dysfunction. Studies evaluating diaphragmatic function recovery after extubation are lacking. We evaluated early and late recoveries from ventilator-induced diaphragmatic dysfunction in a mouse model. DESIGN: Experimental randomized study. SETTING: Research laboratory. SUBJECTS: C57/BL6 mice. INTERVENTIONS: Six groups of C57/BL6 mice. Mice were ventilated for 6 hours and then euthanatized immediately (n = 18), or 1 (n = 18) or 10 days after extubation with (n = 5) and without S107 (n = 16) treatment. Mice euthanatized immediately after 6 hours of anesthesia (n = 15) or after 6 hours of anesthesia and 10 days of recovery (n = 5) served as controls. MEASUREMENTS AND MAIN RESULTS: For each group, diaphragm force production, posttranslational modification of ryanodine receptor, oxidative stress, proteolysis, and cross-sectional areas were evaluated. After 6 hours of mechanical ventilation, diaphragm force production was decreased by 25-30%, restored to the control levels 1 day after extubation, and secondarily decreased by 20% 10 days after extubation compared with controls. Ryanodine receptor was protein kinase A-hyperphosphorylated, S-nitrosylated, oxidized, and depleted of its stabilizing subunit calstabin-1 6 hours after the onset of the mechanical ventilation, 1 and 10 days after extubation. Post extubation treatment with S107, a Rycal drug that stabilizes the ryanodine complex, did reverse the loss of diaphragmatic force associated with mechanical ventilation. Total protein oxidation was restored to the control levels 1 day after extubation. Markers of proteolysis including calpain 1 and calpain 2 remained activated 10 days after extubation without significant changes in cross-sectional areas. CONCLUSIONS: We report that mechanical ventilation is associated with a late diaphragmatic dysfunction related to a structural alteration of the ryanodine complex that is reversed with the S107 treatment.


Subject(s)
Airway Extubation/adverse effects , Diaphragm , Respiration, Artificial/adverse effects , Animals , Blotting, Western , Diaphragm/pathology , Diaphragm/physiopathology , Disease Models, Animal , Immunoprecipitation , Mice , Mice, Inbred C57BL , Oxidative Stress , Proteolysis , Ryanodine Receptor Calcium Release Channel/metabolism
8.
Crit Care Med ; 48(10): e889-e896, 2020 10.
Article in English | MEDLINE | ID: mdl-32769622

ABSTRACT

OBJECTIVES: The use of a videolaryngoscope in the ICU on the first endotracheal intubation attempt and intubation-related complications is controversial. The objective of this study was to evaluate the first intubation attempt success rate in the ICU with the McGrath MAC videolaryngoscope (Medtronic, Minneapolis, MN) according to the operators' videolaryngoscope expertise and to describe its association with the occurrence of intubation-related complications. DESIGN: Observational study. SETTING: Medical ICU. SUBJECTS: Consecutive endotracheal intubations in critically ill patients. INTERVENTIONS: Systematic use of the videolaryngoscope. MEASUREMENTS AND MAIN OUTCOMES: We enrolled 202 consecutive endotracheal intubations. Overall first-attempt success rate was 126 of 202 (62%). Comorbidities, junior operator, cardiac arrest upon admission, and coma were associated with a lower first-attempt success rate. The first-attempt success rate was less than 50% in novice operators (1-5 previous experiences with videolaryngoscope, independently of airway expertise with direct laryngoscopies) and 87% in expert operators (> 15 previous experiences with videolaryngoscope). Multivariate analysis confirmed the association between specific skill training with videolaryngoscope and the first-attempt success rate. Severe hypoxemia and overall immediate intubation-related complications occurred more frequently in first-attempt failure intubations (24/76, 32%) than in first-attempt success intubations (14/126, 11%) (p < 0.001). CONCLUSIONS: We report for the first time in the critically ill that specific videolaryngoscopy skill training, assessed by the number of previous videolaryngoscopies performed, is an independent factor of first-attempt intubation success. Furthermore, we observed that specific skill training with the McGrath MAC videolaryngoscope was fast. Therefore, future trials evaluating videolaryngoscopy in ICUs should consider the specific skill training of operators in videolaryngoscopy.


Subject(s)
Clinical Competence/standards , Critical Illness/therapy , Intensive Care Units/statistics & numerical data , Intubation, Intratracheal/statistics & numerical data , Laryngoscopy/statistics & numerical data , Aged , Coma/epidemiology , Comorbidity , Female , Heart Arrest/epidemiology , Humans , Hypoxia/epidemiology , Intubation, Intratracheal/methods , Laryngoscopy/instrumentation , Male , Middle Aged , Time Factors , Video Recording
9.
Crit Care Med ; 48(4): e277-e284, 2020 04.
Article in English | MEDLINE | ID: mdl-32205617

ABSTRACT

OBJECTIVES: Urinary biomarkers and renal Doppler sonography remain considered as promising tools to distinguish transient from persistent acute kidney injury. The performance of the urinary biomarker, tissue inhibitor of metalloproteinase-2 x insulin-like growth factor-binding protein 7 and of renal resistive index to predict persistent acute kidney injury showed contradictory results. Our aim was to evaluate the performance of tissue inhibitor of metalloproteinase-2 x insulin-like growth factor-binding protein 7 and renal resistive index in predicting reversibility of acute kidney injury in critically ill patients. DESIGN: Prospective observational study. SETTING: Twenty-bed medical ICU in an university hospital. PATIENTS: Consecutive patients with acute kidney injury. INTERVENTION: None. MEASUREMENTS AND MAIN RESULTS: Renal resistive index was measured within 12 hours after admission, and urinary tissue inhibitor of metalloproteinase-2 and insulin-like growth factor-binding protein 7 was measured at H0, H6, H12, and H24. Renal dysfunction reversibility was evaluated at day 3. Receiver operating characteristic curves were plotted to evaluate diagnostic performance of renal resistive index and tissue inhibitor of metalloproteinase-2 x insulin-like growth factor-binding protein 7 to predict a persistent acute kidney injury. Overall, 100 patients were included in whom 50 with persistent acute kidney injury. Renal resistive index was higher in persistent acute kidney injury group. Urinary tissue inhibitor of metalloproteinase-2 x insulin-like growth factor-binding protein 7 was not significantly different at each time between both groups. The performance of tissue inhibitor of metalloproteinase-2 x insulin-like growth factor-binding protein 7 was poor with respectively an area under the receiver operating characteristic curves of 0.57 (95% CI, 0.45-0.68), 0.58 (95% CI, 0.47-0.69), 0.61 (95% CI, 0.50-0.72), and 0.57 (95% CI, 0.46-0.68) at H0, H6, H12, and H24. The area under the receiver operating characteristic curve for renal resistive index was 0.93 (95% CI, 0.89-0.98). A renal resistive index greater than or equal to 0.685 predicting persistent acute kidney injury with 78% (95% CI, 64-88%) sensitivity and 90% (95% CI, 78-97%) specificity. CONCLUSIONS: Renal resistive index had a good performance for predicting the reversibility of acute kidney injury in critically ill patients. Urinary tissue inhibitor of metalloproteinase-2 x insulin-like growth factor-binding protein 7 was unable to differentiate transient from persistent acute kidney injury.


Subject(s)
Acute Kidney Injury/blood , Critical Illness , Insulin-Like Growth Factor Binding Proteins/blood , Tissue Inhibitor of Metalloproteinase-2/blood , Biomarkers/blood , Diagnostic Tests, Routine , Female , Humans , Kidney/blood supply , Male , Middle Aged , Prospective Studies , Vascular Resistance
10.
Crit Care ; 24(1): 79, 2020 03 05.
Article in English | MEDLINE | ID: mdl-32138763

ABSTRACT

In the publication of this article [1], there was an error in the Family Name of one of the authors. This has now been updated in the original article.

11.
Crit Care ; 24(1): 34, 2020 02 03.
Article in English | MEDLINE | ID: mdl-32014005

ABSTRACT

BACKGROUND: Muscle weakness following critical illness is the consequence of loss of muscle mass and alteration of muscle quality. It is associated with long-term disability. Ultrasonography is a reliable tool to quantify muscle mass, but studies that evaluate muscle quality at the critically ill bedside are lacking. Shear wave ultrasound elastography (SWE) provides spatial representation of soft tissue stiffness and measures of muscle quality. The reliability and reproducibility of SWE in critically ill patients has never been evaluated. METHODS: Two operators tested in healthy controls and in critically ill patients the intra- and inter-operator reliability of the SWE using transversal and longitudinal views of the diaphragm and limb muscles. Reliability was calculated using the intra-class correlation coefficient and a bootstrap sampling method assessed their consistency. RESULTS: We collected 560 images. Longitudinal views of the diaphragm (ICC 0.83 [0.50-0.94]), the biceps brachii (ICC 0.88 [0.67-0.96]) and the rectus femoris (ICC 0.76 [0.34-0.91]) were the most reliable views in a training set of healthy controls. Intra-class correlation coefficient for inter-operator reproducibility and intra-operator reliability was above 0.9 for all muscles in a validation set of healthy controls. In critically ill patients, inter-operator reproducibility and intra-operator 1 and 2 reliability ICCs were respectively 0.92 [0.71-0.98], 0.93 [0.82-0.98] and 0.92 [0.81-0.98] for the diaphragm; 0.96 [0.86-0.99], 0.98 [0.94-0.99] and 0.99 [0.96-1] for the biceps brachii and 0.91 [0.51-0.98], 0.97 [0.93-0.99] and 0.99 [0.97-1] for the rectus femoris. The probability to reach intra-class correlation coefficient greater than 0.8 in a 10,000 bootstrap sampling for inter-operator reproducibility was respectively 81%, 84% and 78% for the diaphragm, the biceps brachii and the rectus femoris respectively. CONCLUSIONS: SWE is a reliable technique to evaluate limb muscles and the diaphragm in both healthy controls and in critically ill patients. TRIAL REGISTRATION: The study was registered (ClinicalTrial NCT03550222).


Subject(s)
Diaphragm/physiopathology , Elasticity Imaging Techniques/instrumentation , Extremities/physiopathology , Muscles/abnormalities , Ultrasonography/instrumentation , Ultrasonography/standards , Adult , Critical Illness , Elasticity Imaging Techniques/methods , Elasticity Imaging Techniques/trends , Female , France , Hospitals, University/organization & administration , Hospitals, University/statistics & numerical data , Humans , Male , Middle Aged , Muscles/physiopathology , Organ Dysfunction Scores , Prospective Studies , Reproducibility of Results , Statistics, Nonparametric , Ultrasonography/methods
12.
Lancet ; 392(10141): 31-40, 2018 07 07.
Article in English | MEDLINE | ID: mdl-29910040

ABSTRACT

BACKGROUND: Acute acidaemia is frequently observed during critical illness. Sodium bicarbonate infusion for the treatment of severe metabolic acidaemia is a possible treatment option but remains controversial, as no studies to date have examined its effect on clinical outcomes. Therefore, we aimed to evaluate whether sodium bicarbonate infusion would improve these outcomes in critically ill patients. METHODS: We did a multicentre, open-label, randomised controlled, phase 3 trial. Local investigators screened eligible patients from 26 intensive care units (ICUs) in France. We included adult patients (aged ≥18 years) who were admitted within 48 h to the ICU with severe acidaemia (pH ≤7·20, PaCO2 ≤45 mm Hg, and sodium bicarbonate concentration ≤20 mmol/L) and with a total Sequential Organ Failure Assessment score of 4 or more or an arterial lactate concentration of 2 mmol/L or more. We randomly assigned patients (1:1), by stratified randomisation with minimisation via a restricted web platform, to receive either no sodium bicarbonate (control group) or 4·2% of intravenous sodium bicarbonate infusion (bicarbonate group) to maintain the arterial pH above 7·30. Our protocol recommended that the volume of each infusion should be within the range of 125-250 mL in 30 min, with a maximum of 1000 mL within 24 h after inclusion. Randomisation criteria were stratified among three prespecified strata: age, sepsis status, and the Acute Kidney Injury Network (AKIN) score. The primary outcome was a composite of death from any cause by day 28 and the presence of at least one organ failure at day 7. All analyses were done on data from the intention-to-treat population, which included all patients who underwent randomisation. This study is registered with ClinicalTrials.gov, number NCT02476253. FINDINGS: Between May 5, 2015, and May 7, 2017, we enrolled 389 patients into the intention-to-treat analysis in the overall population (194 in the control group and 195 in the bicarbonate group). The primary outcome occurred in 138 (71%) of 194 patients in the control group and 128 (66%) of 195 in the bicarbonate group (absolute difference estimate -5·5%, 95% CI -15·2 to 4·2; p=0·24). The Kaplan-Meier method estimate of the probability of survival at day 28 between the control group and bicarbonate group was not significant (46% [95% CI 40-54] vs 55% [49-63]; p=0·09. In the prespecified AKIN stratum of patients with a score of 2 or 3, the Kaplan-Meier method estimate of survival by day 28 between the control group and bicarbonate group was significant (37% [95% CI 28-48] vs 54% [45-65]; p=0·0283). [corrected] Metabolic alkalosis, hypernatraemia, and hypocalcaemia were observed more frequently in the bicarbonate group than in the control group, with no life-threatening complications reported. INTERPRETATION: In patients with severe metabolic acidaemia, sodium bicarbonate had no effect on the primary composite outcome. However, sodium bicarbonate decreased the primary composite outcome and day 28 mortality in the a-priori defined stratum of patients with acute kidney injury. FUNDING: French Ministry of Health and the Société Française d'Anesthésie Réanimation.


Subject(s)
Acidosis/drug therapy , Intensive Care Units , Sodium Bicarbonate/therapeutic use , Acidosis/mortality , Cohort Studies , Humans , Hydrogen-Ion Concentration , Infusions, Intravenous , Renal Replacement Therapy , Survival Analysis
13.
Crit Care ; 23(1): 370, 2019 11 21.
Article in English | MEDLINE | ID: mdl-31752937

ABSTRACT

BACKGROUND: Intensive care unit (ICU)-acquired weakness (ICU-AW) and ICU-acquired diaphragm dysfunction (ICU-DD) occur frequently in mechanically ventilated (MV) patients. It is unknown whether they have different risk factors and different impacts on outcome. This study was designed to (1) describe the respective risk factors associated with ICU-AW and severe ICU-DD and (2) evaluate the respective impact of ICU-AW and severe ICU-DD on outcome. METHODS: Post hoc analysis of two prospective cohort studies conducted in two ICUs. In patients mechanically ventilated for at least 24 h undergoing a first spontaneous breathing trial, severe ICU-DD was defined as diaphragm twitch pressure < 7 cmH2O and ICU-AW was defined as Medical Research Council Score < 48. RESULTS: One hundred sixteen patients were assessed. Factors independently associated with severe ICU-DD were age, longer duration of MV, and exposure to sufentanil, and those factors associated with ICU-AW were longer duration of MV and exposure to norepinephrine. Severe ICU-DD (OR 3.56, p = 0.008), but not ICU-AW, was independently associated with weaning failure (59%). ICU-AW (OR 4.30, p = 0.033), but not severe ICU-DD, was associated with ICU mortality. Weaning failure and mortality rate were higher in patients with both severe ICU-DD and ICU-AW (86% and 39%, respectively) than in patients with either severe ICU-DD (64% and 0%) or ICU-AW (63% and 13%). CONCLUSION: Severe ICU-DD and ICU-AW have different risk factors and different impacts on weaning failure and mortality. The impact of the combination of ICU-DD and ICU-AW is more pronounced than their individual impact.


Subject(s)
Diaphragm/physiopathology , Intensive Care Units , Muscle Weakness/mortality , Respiration, Artificial/mortality , Severity of Illness Index , Ventilator Weaning/mortality , Adult , Aged , Cohort Studies , Critical Illness , Female , Humans , Intensive Care Units/trends , Male , Middle Aged , Mortality/trends , Muscle Weakness/diagnosis , Muscle Weakness/therapy , Prospective Studies , Respiration, Artificial/trends , Ventilator Weaning/trends
14.
Proc Natl Acad Sci U S A ; 113(32): 9069-74, 2016 08 09.
Article in English | MEDLINE | ID: mdl-27457930

ABSTRACT

Ventilator-induced diaphragmatic dysfunction (VIDD) refers to the diaphragm muscle weakness that occurs following prolonged controlled mechanical ventilation (MV). The presence of VIDD impedes recovery from respiratory failure. However, the pathophysiological mechanisms accounting for VIDD are still not fully understood. Here, we show in human subjects and a mouse model of VIDD that MV is associated with rapid remodeling of the sarcoplasmic reticulum (SR) Ca(2+) release channel/ryanodine receptor (RyR1) in the diaphragm. The RyR1 macromolecular complex was oxidized, S-nitrosylated, Ser-2844 phosphorylated, and depleted of the stabilizing subunit calstabin1, following MV. These posttranslational modifications of RyR1 were mediated by both oxidative stress mediated by MV and stimulation of adrenergic signaling resulting from the anesthesia. We demonstrate in the murine model that such abnormal resting SR Ca(2+) leak resulted in reduced contractile function and muscle fiber atrophy for longer duration of MV. Treatment with ß-adrenergic antagonists or with S107, a small molecule drug that stabilizes the RyR1-calstabin1 interaction, prevented VIDD. Diaphragmatic dysfunction is common in MV patients and is a major cause of failure to wean patients from ventilator support. This study provides the first evidence to our knowledge of RyR1 alterations as a proximal mechanism underlying VIDD (i.e., loss of function, muscle atrophy) and identifies RyR1 as a potential target for therapeutic intervention.


Subject(s)
Diaphragm/physiopathology , Respiration, Artificial/adverse effects , Ryanodine Receptor Calcium Release Channel/physiology , Animals , Calcium/metabolism , Humans , Mice , Muscle Contraction , Oxidative Stress , Receptors, Adrenergic, beta/physiology , Signal Transduction , Tacrolimus Binding Proteins/physiology , Ventilators, Mechanical/adverse effects
15.
Crit Care Med ; 46(4): 532-539, 2018 04.
Article in English | MEDLINE | ID: mdl-29261566

ABSTRACT

OBJECTIVES: To determine the prevalence of and risk factors for cardiac arrest during intubation in ICU, as well as the association of ICU intubation-related cardiac arrest with 28-day mortality. DESIGN: Retrospective analysis of prospectively collected data. SETTING: Sixty-four French ICUs. PATIENTS: Critically ill patients requiring intubation in the ICU. INTERVENTIONS: None. MEASUREMENTS AND MAIN RESULTS: During the 1,847 intubation procedures included, 49 cardiac arrests (2.7%) occurred, including 14 without return of spontaneous circulation (28.6%) and 35 with return of spontaneous circulation (71.4%). In multivariate analysis, the main predictors of intubation-related cardiac arrest were arterial hypotension (systolic blood pressure < 90 mm Hg) prior to intubation (odds ratio = 3.406 [1.797-6.454]; p = 0.0002), hypoxemia prior to intubation (odds ratio = 3.991 [2.101-7.583]; p < 0.0001), absence of preoxygenation (odds ratio = 3.584 [1.287-9.985]; p = 0.0146), overweight/obesity (body mass index > 25 kg/m; odds ratio = 2.005 [1.017-3.951]; p = 0.0445), and age more than 75 years old (odds ratio = 2.251 [1.080-4.678]; p = 0.0297). Overall 28-day mortality rate was 31.2% (577/1,847) and was significantly higher in patients who experienced intubation-related cardiac arrest than in noncardiac arrest patients (73.5% vs 30.1%; p < 0.001). After multivariate analysis, intubation-related cardiac arrest was an independent risk factor for 28-day mortality (hazard ratio = 3.9 [2.4-6.3]; p < 0.0001). CONCLUSIONS: ICU intubation-related cardiac arrest occurs in one of 40 procedures with high immediate and 28-day mortality. We identified five independent risk factors for cardiac arrest, three of which are modifiable, possibly to decrease intubation-related cardiac arrest prevalence and 28-day ICU mortality.


Subject(s)
Critical Illness/mortality , Critical Illness/therapy , Heart Arrest/etiology , Heart Arrest/mortality , Intubation, Intratracheal/adverse effects , Age Factors , Body Mass Index , Female , Heart Arrest/epidemiology , Humans , Hypotension/epidemiology , Hypoxia/epidemiology , Intensive Care Units/statistics & numerical data , Intubation, Intratracheal/methods , Male , Odds Ratio , Prevalence , Retrospective Studies , Risk Factors , Severity of Illness Index , Socioeconomic Factors
16.
Crit Care Med ; 46(4): e294-e301, 2018 04.
Article in English | MEDLINE | ID: mdl-29293153

ABSTRACT

OBJECTIVES: To determine the short- and long-term mortality of obese ICU patients following medical as opposed to surgical admission and the relation between obesity and mortality. DESIGN: Retrospective analysis of prospectively collected data, using a propensity score-matched analysis of patients with medical or surgical admission. SETTING: One French mixed medical-surgical ICU. PATIENTS: Critically ill obese patients (body mass index ≥ 30 kg/m) and nonobese patients admitted during a 14-year period. INTERVENTIONS: None. MEASUREMENTS AND MAIN RESULTS: Seven-hundred ninety-one obese patients and 4,644 nonobese patients were included, 338 (43%) and 2,367 (51%) medical and 453 (57%) and 2,277 (49%) surgical obese and nonobese patients, respectively. Mortality was significantly higher in medical than in surgical obese patients in ICU (25% vs 12%; p < 0.001) and up to 365 days (36% vs 18%; p < 0.001) post ICU admission. One-to-one propensity score matching generated 260 pairs with well-balanced baseline characteristics. After matching on propensity score, mortality was still significantly higher in medical patients both in the ICU (21% vs 13%; p = 0.03) and up to 365 days (30% vs 20%; p = 0.01) post ICU admission. Obesity was not significantly associated with mortality both in univariate analysis (140 obese patients [15%] in the dead group vs 651 [14%] in the alive group; p = 0.72) and multivariate analysis (odds ratio, 1.09 [95% CI, 0.86-1.38]; p = 0.49) after adjustment for Simplified Acute Physiology Score II, age, category of admission, history of cardiac disease, and history of respiratory disease. CONCLUSIONS: After careful matching, the data suggest that ICU mortality in obese population was higher in the medical group than in the surgical group and remains significantly higher 365 days post ICU admission.


Subject(s)
Body Mass Index , Intensive Care Units/classification , Intensive Care Units/statistics & numerical data , Obesity/mortality , APACHE , Adult , Aged , Female , France , Hospital Mortality/trends , Humans , Kaplan-Meier Estimate , Length of Stay , Male , Middle Aged , Retrospective Studies , Risk Factors , Surgical Procedures, Operative/mortality
17.
Crit Care Med ; 45(5): e470-e478, 2017 May.
Article in English | MEDLINE | ID: mdl-28240688

ABSTRACT

OBJECTIVE: Obesity and critical illness modify pharmacokinetics of antibiotics, but piperacillin-tazobactam continuous IV infusion pharmacokinetics has been poorly studied in obese critically ill patients. We aimed to compare pharmacokinetics of piperacillin in severely obese and nonobese patients with severe sepsis or septic shock. We hypothesized that plasma concentration variability would expose the critically ill to both piperacillin under and overdosing. METHODS: Prospective comparative study. Consecutive critically ill severely obese (body mass index, > 35 kg/m) and nonobese patients (body mass index, < 30 kg/m) were treated with 16 g/2 g/24 hr continuous piperacillin-tazobactam infusion. Piperacillin plasma concentration was measured every 12 hours over a 7-day period by high-pressure liquid chromatography. Unbound piperacillin plasma concentration and fractional time of plasma concentration spent over 64 mg/L (4-fold the minimal inhibitory concentration for Pseudomonas aeruginosa) were compared between the two groups. We performed 5,000 Monte Carlo simulations for various dosing regimens and minimal inhibitory concentration and calculated the probability to spend 100% of the time over 64 mg/L. RESULTS: We enrolled 11 severely obese and 12 nonobese patients and obtained 294 blood samples. We did not observe a statistically significant difference in piperacillin plasma concentrations over time between groups. The fractional time over 64 mg/L was 64% (43-82%) and 93% (85-100%) in obese and nonobese patients, respectively, p = 0.027 with intra- and intergroup variability. Five nonobese and two obese patients experienced potentially toxic piperacillin plasma concentrations. When 64 mg/L was targeted, Monte Carlo simulations showed that 12 g/1.5 g/24 hr was inadequate in both groups and 16 g/2 g/24 hr was adequate only in nonobese patients. CONCLUSION: Using a conventional dosing of 16 g/2 g/24 hr continuous infusion, obese patients were more likely than nonobese patients to experience piperacillin underdosing when facing high minimal inhibitory concentration pathogens. The present study suggests that piperacillin drug monitoring might be necessary in the sickest patients who are at the highest risk of unpredictable plasma concentration exposing them to overdose, toxicity, underdosing, and treatment failure.


Subject(s)
Anti-Bacterial Agents/pharmacokinetics , Critical Illness , Obesity/metabolism , Penicillanic Acid/analogs & derivatives , Shock, Septic/drug therapy , Aged , Aged, 80 and over , Anti-Bacterial Agents/administration & dosage , Body Mass Index , Dose-Response Relationship, Drug , Female , Humans , Infusions, Intravenous , Male , Microbial Sensitivity Tests , Middle Aged , Monte Carlo Method , Obesity/epidemiology , Penicillanic Acid/administration & dosage , Penicillanic Acid/pharmacokinetics , Piperacillin/administration & dosage , Piperacillin/pharmacokinetics , Piperacillin, Tazobactam Drug Combination , Prospective Studies , Shock, Septic/epidemiology , Shock, Septic/microbiology
18.
J Muscle Res Cell Motil ; 38(1): 17-24, 2017 02.
Article in English | MEDLINE | ID: mdl-28260211

ABSTRACT

Respiratory muscle contractile inactivity during mechanical ventilation (MV) induces diaphragm muscle weakness, a condition referred to as ventilator-induced diaphragmatic dysfunction (VIDD). Although VIDD pathophysiological mechanisms are still not fully understood, it has been recently suggested that remodeling of the sarcoplasmic reticulum (SR) calcium release channel/ryanodine receptors (RyR1) in the diaphragm is a proximal mechanism of VIDD. Here, we used piglets, a large animal model of VIDD that is more relevant to human pathophysiology, to determine whether RyR1 alterations are observed in the presence of diaphragm weakness. In piglets, diaphragm weakness induced by 72 h of respiratory muscle unloading was associated with SR RyR1 remodeling and abnormal resting SR Ca2+ leak in the diaphragm. Specifically, following controlled mechanical ventilation, diaphragm contractile function was reduced. Moreover, RyR1 macromolecular complexes were more oxidized, S-nitrosylated and phosphorylated at Ser-2844 and depleted of the stabilizing subunit calstabin1 compared with controls on adaptive support ventilation that maintains diaphragmatic contractile activity. Our study strongly supports the hypothesis that RyR1 is a potential therapeutic target in VIDD and the interest of using small molecule drugs to prevent RyR1-mediated SR Ca2+ leak induced by respiratory muscle unloading in patients who require controlled mechanical ventilation.


Subject(s)
Diaphragm/physiopathology , Respiration, Artificial , Respiratory Muscles/physiopathology , Ryanodine Receptor Calcium Release Channel/metabolism , Animals , Diaphragm/metabolism , Female , Models, Animal , Muscle Weakness/etiology , Muscle Weakness/metabolism , Muscle Weakness/physiopathology , Respiratory Muscles/metabolism , Swine , Ventilators, Mechanical
SELECTION OF CITATIONS
SEARCH DETAIL