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Favorable Neurocognitive Outcome with Low Tidal Volume Ventilation after Cardiac Arrest
Beitler, Jeremy R; Ghafouri, Tiffany Bita; Jinadasa, Sayuri P; Mueller, Ariel; Hsu, Leeyen; Anderson, Ryan J; Joshua, Jisha; Tyagi, Sanjeev; Malhotra, Atul; Sell, Rebecca E; Talmor, Daniel
RATIONALE:Neurocognitive outcome after out-of-hospital cardiac arrest (OHCA) is often poor, even when initial resuscitation succeeds. Lower tidal volumes (Vts) attenuate extrapulmonary organ injury in other disease states and are neuroprotective in preclinical models of critical illness. OBJECTIVE:To evaluate the association between Vt and neurocognitive outcome after OHCA. METHODS:We performed a propensity-adjusted analysis of a two-center retrospective cohort of patients experiencing OHCA who received mechanical ventilation for at least the first 48 hours of hospitalization. Vt was calculated as the time-weighted average over the first 48 hours, in milliliters per kilogram of predicted body weight (PBW). The primary endpoint was favorable neurocognitive outcome (cerebral performance category of 1 or 2) at discharge. MEASUREMENTS AND MAIN RESULTS:Of 256 included patients, 38% received time-weighted average Vt greater than 8 ml/kg PBW during the first 48 hours. Lower Vt was independently associated with favorable neurocognitive outcome in propensity-adjusted analysis (odds ratio, 1.61; 95% confidence interval [CI], 1.13-2.28 per 1-ml/kg PBW decrease in Vt; P = 0.008). This finding was robust to several sensitivity analyses. Lower Vt also was associated with more ventilator-free days (β = 1.78; 95% CI, 0.39-3.16 per 1-ml/kg PBW decrease; P = 0.012) and shock-free days (β = 1.31; 95% CI, 0.10-2.51; P = 0.034). Vt was not associated with hypercapnia (P = 1.00). Although the propensity score incorporated several biologically relevant covariates, only height, weight, and admitting hospital were independent predictors of Vt less than or equal to 8 ml/kg PBW. CONCLUSIONS:Lower Vt after OHCA is independently associated with favorable neurocognitive outcome, more ventilator-free days, and more shock-free days. These findings suggest a role for low-Vt ventilation after cardiac arrest.
PMID: 28267376
ISSN: 1535-4970
CID: 5839922
Ventilator-induced lung injury increases expression of endothelial inflammatory mediators in the kidney
Hepokoski, Mark; Englert, Joshua A; Baron, Rebecca M; Crotty-Alexander, Laura E; Fuster, Mark M; Beitler, Jeremy R; Malhotra, Atul; Singh, Prabhleen
In critical illness, such as sepsis or the acute respiratory distress syndrome, acute kidney injury (AKI) is common and associated with increased morbidity and mortality. Mechanical ventilation in critical illnesses is also a risk factor for AKI, but it is potentially modifiable. Injurious ventilation strategies may lead to the systemic release of inflammatory mediators from the lung due to ventilator induced lung injury (VILI). The systemic consequences of VILI are difficult to differentiate clinically from other systemic inflammatory syndromes, such as sepsis. The purpose of this study was to identify unique changes in the expression of inflammatory mediators in kidney tissue in response to VILI compared with systemic sepsis to gain insight into direct effects of VILI on the kidney. Four groups of mice were compared-mice with sepsis from cecal ligation and puncture (CLP), mice subjected to injurious mechanical ventilation with high tidal volumes (VILI), mice exposed to CLP followed by VILI (CLP+VILI), and sham controls. Protein expression of common inflammatory mediators in kidneys was analyzed using a proteome array and confirmed by Western blot analysis or ELISA. VEGF and VCAM-1 were found to be significantly elevated in kidneys from VILI mice compared with sham and CLP. Angiopoietin-2 was significantly increased in CLP+VILI compared with CLP alone and was also correlated with higher levels of AKI biomarker, neutrophil gelatinase-associated lipocalin. These results suggest that VILI alters the renal expression of VEGF, VCAM-1, and angiopoietin-2, and these proteins warrant further investigation as potential biomarkers and therapeutic targets.
PMCID:5407070
PMID: 28365585
ISSN: 1522-1466
CID: 5839932
Response [Comment]
Scholten, Eric L; Beitler, Jeremy R; Prisk, G Kim; Malhotra, Atul
PMID: 28483117
ISSN: 1931-3543
CID: 5839942
Unexpected intensive care transfer of admitted patients with severe sepsis
Wardi, Gabriel; Wali, Arvin R; Villar, Julian; Tolia, Vaishal; Tomaszewski, Christian; Sloane, Christian; Fedullo, Peter; Beitler, Jeremy R; Nolan, Matthew; Lasoff, Daniel; Sell, Rebecca E
BACKGROUND:Patients with severe sepsis generally respond well to initial therapy administered in the emergency department (ED), but a subset later decompensate and require unexpected transfer to the intensive care unit (ICU). This study aimed to identify clinical factors that can predict patients at increased risk for delayed transfer to the ICU and the association of delayed ICU transfer with mortality. METHODS:This is a nested case-control study in a prospectively collected registry of patients with severe sepsis and septic shock at two EDs. Cases had severe sepsis and unexpected ICU transfer within 48 h of admission from the ED; controls had severe sepsis but remained in a non-ICU level of care. Univariate and multivariate regression analyses were used to identify predictors of unexpected transfer to the ICU, which was the primary outcome. Differences in mortality between these two groups as well as a cohort of patients directly admitted to the ICU were also calculated. RESULTS: = 0.029) were independent predictors of unexpected ICU transfer. Mortality of patients who were not upgraded to the ICU was 8.0%. Patients with unexpected ICU upgrade had similar mortality (25.0%) to those patients with severe sepsis/septic shock (24.6%) who were initially admitted to the ICU, despite less severe indices of illness at presentation. CONCLUSIONS:Serum lactate ≥4 mmol/L and nighttime admissions are associated with unexpected ICU transfer in patients with severe sepsis. Mortality among patients with delayed ICU upgrade was similar to that for patients initially admitted directly to the ICU.
PMCID:5508707
PMID: 28717513
ISSN: 2052-0492
CID: 5839962
Factors and outcomes associated with inpatient cardiac arrest following emergent endotracheal intubation
Wardi, Gabriel; Villar, Julian; Nguyen, Thien; Vyas, Anuja; Pokrajac, Nicholas; Minokadeh, Anushirvan; Lasoff, Daniel; Tainter, Christopher; Beitler, Jeremy R; Sell, Rebecca E
BACKGROUND:Inpatient peri-intubation cardiac arrest (PICA) following emergent endotracheal intubation (ETI) is an uncommon but potentially preventable type of cardiac arrest (CA). Limited published data exist describing factors associated with inpatient PICA and patient outcomes. This study identifies risk factors associated with PICA among hospitalized patients emergently intubated out of the operating room and compares PICA to other types of inpatient CA. METHODS:Retrospective case-control study of patients at our institution over a five-year period. Cases were defined as inpatients emergently intubated outside of the operating room that experienced cardiac arrest within 20min after ETI. The control group consisted of inpatients emergently intubated out of the operating room without CA. Predictors of PICA were identified through univariate and multivariate analysis. Clinical outcomes were compared between PICA and other inpatient CAs, identified through a prospectively enrolled CA registry at our institution. RESULTS:29 episodes of PICA occurred over 5 years, accounting for 5% of all inpatient arrests. Shock index ≥1.0, intubation within one hour of nursing shift change, and use of succinylcholine were independently associated with PICA. Sustained ROSC, survival to discharge, and neurocognitive outcome did not differ significantly between groups. CONCLUSION:Patients outcomes following PICA were comparable to other causes of inpatient CA. Potentially modifiable factors were associated with PICA. Hemodynamic resuscitation, optimized staffing strategies, and possible avoidance of succinylcholine were associated with decreased risk of PICA. Clinical trials testing targeted strategies to optimize peri-intubation care are needed to identify effective interventions to prevent this potentially avoidable type of CA.
PMCID:5920533
PMID: 29032298
ISSN: 1873-1570
CID: 5839972
Leadership in Medical Emergencies Is "Highly Teachable" [Comment]
Sell, Rebecca E; Meier, Angela; Sundararajan, Radhika; Beitler, Jeremy R
PMID: 29149001
ISSN: 1530-0293
CID: 5839992
Volume Delivered During Recruitment Maneuver Predicts Lung Stress in Acute Respiratory Distress Syndrome
Beitler, Jeremy R; Majumdar, Rohit; Hubmayr, Rolf D; Malhotra, Atul; Thompson, B Taylor; Owens, Robert L; Loring, Stephen H; Talmor, Daniel
OBJECTIVE:Global lung stress varies considerably with low tidal volume ventilation for acute respiratory distress syndrome. High stress despite low tidal volumes may worsen lung injury and increase risk of death. No widely available parameter exists to assess global lung stress. We aimed to determine whether the volume delivered during a recruitment maneuver (V(RM)) is inversely associated with lung stress and mortality in acute respiratory distress syndrome. DESIGN/METHODS:Substudy of an acute respiratory distress syndrome clinical trial on esophageal pressure-guided positive end-expiratory pressure titration. SETTING/METHODS:U.S. academic medical center. PATIENTS/METHODS:Forty-two patients with acute respiratory distress syndrome in whom airflow, airway pressure, and esophageal pressure were recorded during the recruitment maneuver. INTERVENTIONS/METHODS:A single recruitment maneuver was performed before initiating protocol-directed ventilator management. Recruitment maneuvers consisted of a 30-second breath hold at 40 cm H2O airway pressure under heavy sedation or paralysis. V(RM) was calculated by integrating the flow-time waveform during the maneuver. End-inspiratory stress was defined as the transpulmonary (airway minus esophageal) pressure during end-inspiratory pause of a tidal breath and tidal stress as the transpulmonary pressure difference between end-inspiratory and end-expiratory pauses. MEASUREMENTS AND MAIN RESULTS/RESULTS:V(RM) ranged between 7.4 and 34.7 mL/kg predicted body weight. Lower V(RM) predicted high end-inspiratory and tidal lung stress (end-inspiratory: β = -0.449; 95% CI, -0.664 to -0.234; p < 0.001; tidal: β = -0.267; 95% CI, -0.423 to -0.111; p = 0.001). After adjusting for PaO2/FIO2 and either driving pressure, tidal volume, or plateau pressure and positive end-expiratory pressure, V(RM) remained independently associated with both end-inspiratory and tidal stress. In unadjusted analysis, low V(RM) predicted increased risk of death (odds ratio, 0.85; 95% CI, 0.72-1.00; p = 0.026). V(RM) remained significantly associated with mortality after adjusting for study arm (odds ratio, 0.84; 95% CI, 0.71-1.00; p = 0.022). CONCLUSIONS:Low V(RM) independently predicts high lung stress and may predict risk of death in patients with acute respiratory distress syndrome.
PMID: 26474111
ISSN: 1530-0293
CID: 5839802
Personalized medicine for ARDS: the 2035 research agenda
Beitler, Jeremy R; Goligher, Ewan C; Schmidt, Matthieu; Spieth, Peter M; Zanella, Alberto; Martin-Loeches, Ignacio; Calfee, Carolyn S; Cavalcanti, Alexandre B; ,
In the last 20 years, survival among patients with acute respiratory distress syndrome (ARDS) has increased substantially with advances in lung-protective ventilation and resuscitation. Building on this success, personalizing mechanical ventilation to patient-specific physiology for enhanced lung protection will be a top research priority for the years ahead. However, the ARDS research agenda must be broader in scope. Further understanding of the heterogeneous biology, from molecular to mechanical, underlying early ARDS pathogenesis is essential to inform therapeutic discovery and tailor treatment and prevention strategies to the individual patient. The ARDSne(x)t research agenda for the next 20 years calls for bringing personalized medicine to ARDS, asking simultaneously both whether a treatment affords clinically meaningful benefit and for whom. This expanded scope necessitates standard acquisition of highly granular biological, physiological, and clinical data across studies to identify biologically distinct subgroups that may respond differently to a given intervention. Clinical trials will need to consider enrichment strategies and incorporate long-term functional outcomes. Tremendous investment in research infrastructure and global collaboration will be vital to fulfilling this agenda.
PMCID:4850840
PMID: 27040103
ISSN: 1432-1238
CID: 5839832
Personalizing mechanical ventilation for acute respiratory distress syndrome
Berngard, S Clark; Beitler, Jeremy R; Malhotra, Atul
Lung-protective ventilation with low tidal volumes remains the cornerstone for treating patient with acute respiratory distress syndrome (ARDS). Personalizing such an approach to each patient's unique physiology may improve outcomes further. Many factors should be considered when mechanically ventilating a critically ill patient with ARDS. Estimations of transpulmonary pressures as well as individual's hemodynamics and respiratory mechanics should influence PEEP decisions as well as response to therapy (recruitability). This summary will emphasize the potential role of personalized therapy in mechanical ventilation.
PMCID:4805818
PMID: 27076966
ISSN: 2072-1439
CID: 5839842
Unmasking a Role for Noninvasive Ventilation in Early Acute Respiratory Distress Syndrome [Comment]
Beitler, Jeremy R; Owens, Robert L; Malhotra, Atul
PMID: 27179463
ISSN: 1538-3598
CID: 5839852