Literature DB >> 30779720

Hemodynamic-Directed Cardiopulmonary Resuscitation Improves Neurologic Outcomes and Mitochondrial Function in the Heart and Brain.

Andrew J Lautz1,2, Ryan W Morgan1, Michael Karlsson1, Constantine D Mavroudis3, Tiffany S Ko4, Daniel J Licht5, Vinay M Nadkarni1, Robert A Berg1, Robert M Sutton1, Todd J Kilbaugh1.   

Abstract

OBJECTIVES: Less than half of the thousands of children who suffer in-hospital cardiac arrests annually survive, and neurologic injury is common among survivors. Hemodynamic-directed cardiopulmonary resuscitation improves short-term survival, but its impact on longer term survival and mitochondrial respiration-a potential neurotherapeutic target-remains unknown. The primary objectives of this study were to compare rates of 24-hour survival with favorable neurologic outcome after cardiac arrest treated with hemodynamic-directed cardiopulmonary resuscitation versus standard depth-guided cardiopulmonary resuscitation and to compare brain and heart mitochondrial respiration between groups 24 hours after resuscitation.
DESIGN: Randomized preclinical large animal trial.
SETTING: A large animal resuscitation laboratory at a large academic children's hospital.
SUBJECTS: Twenty-eight 4-week-old female piglets (8-11 kg).
INTERVENTIONS: Twenty-two swine underwent 7 minutes of asphyxia followed by ventricular fibrillation and randomized treatment with either hemodynamic-directed cardiopulmonary resuscitation (n = 10; compression depth titrated to aortic systolic pressure of 90 mm Hg, vasopressors titrated to coronary perfusion pressure ≥ 20 mm Hg) or depth-guided cardiopulmonary resuscitation (n = 12; depth 1/3 chest diameter, epinephrine every 4 min). Six animals (sham group) underwent anesthesia and instrumentation without cardiac arrest. The primary outcomes were favorable neurologic outcome (swine Cerebral Performance Category ≤ 2) and mitochondrial maximal oxidative phosphorylation utilizing substrate for complex I and complex II (OXPHOSCI+CII) in the cerebral cortex and hippocampus.
MEASUREMENTS AND MAIN RESULTS: Favorable neurologic outcome was more likely with hemodynamic-directed cardiopulmonary resuscitation (7/10) than depth-guided cardiopulmonary resuscitation (1/12; p = 0.006). Hemodynamic-directed cardiopulmonary resuscitation resulted in higher intra-arrest coronary perfusion pressure, aortic pressures, and brain tissue oxygenation. Hemodynamic-directed cardiopulmonary resuscitation resulted in higher OXPHOSCI+CII (pmol oxygen/s × mg/citrate synthase) in the cortex (6.00 ± 0.28 vs 3.88 ± 0.43; p < 0.05) and hippocampus (6.26 ± 0.67 vs 3.55 ± 0.65; p < 0.05) and higher complex I respiration (pmol oxygen/s × mg) in the right (20.62 ± 1.06 vs 15.88 ± 0.81; p < 0.05) and left ventricles (20.14 ± 1.40 vs 14.17 ± 1.53; p < 0.05).
CONCLUSIONS: In a model of asphyxia-associated pediatric cardiac arrest, hemodynamic-directed cardiopulmonary resuscitation increases rates of 24-hour survival with favorable neurologic outcome, intra-arrest hemodynamics, and cerebral and myocardial mitochondrial respiration.

Entities:  

Mesh:

Year:  2019        PMID: 30779720      PMCID: PMC6561502          DOI: 10.1097/CCM.0000000000003620

Source DB:  PubMed          Journal:  Crit Care Med        ISSN: 0090-3493            Impact factor:   7.598


  19 in total

1.  Epinephrine vs placebo in neonatal resuscitation: ROSC and brain MRS/MRI in term piglets.

Authors:  Hannah B Andersen; Mads Andersen; Ted C K Andelius; Mette V Pedersen; Bo Løfgren; Michael Pedersen; Steffen Ringgaard; Kasper J Kyng; Tine B Henriksen
Journal:  Pediatr Res       Date:  2022-06-09       Impact factor: 3.756

2.  Pulse oximetry plethysmography: A new approach for physiology-directed CPR?

Authors:  Lindsay N Shepard; Robert A Berg; Ryan W Morgan
Journal:  Resuscitation       Date:  2021-10-29       Impact factor: 5.262

3.  Low frequency power in cerebral blood flow is a biomarker of neurologic injury in the acute period after cardiac arrest.

Authors:  Brian R White; Tiffany S Ko; Ryan W Morgan; Wesley B Baker; Emilie J Benson; Alec Lafontant; Jonathan P Starr; William P Landis; Kristen Andersen; Jharna Jahnavi; Jake Breimann; Nile Delso; Sarah Morton; Anna L Roberts; Yuxi Lin; Kathryn Graham; Robert A Berg; Arjun G Yodh; Daniel J Licht; Todd J Kilbaugh
Journal:  Resuscitation       Date:  2022-07-08       Impact factor: 6.251

4.  A randomized and blinded trial of inhaled nitric oxide in a piglet model of pediatric cardiopulmonary resuscitation.

Authors:  Ryan W Morgan; Robert M Sutton; Adam S Himebauch; Anna L Roberts; William P Landis; Yuxi Lin; Jonathan Starr; Abhay Ranganathan; Nile Delso; Constantine D Mavroudis; Lindsay Volk; Julia Slovis; Alexandra M Marquez; Vinay M Nadkarni; Marco Hefti; Robert A Berg; Todd J Kilbaugh
Journal:  Resuscitation       Date:  2021-03-22       Impact factor: 5.262

5.  Intracranial Pressure and Cerebral Hemodynamic Monitoring After Cardiac Arrest in Pediatric Pigs Using Contrast Ultrasound-Derived Parameters.

Authors:  Samuel S Shin; Anush Sridharan; Kristina Khaw; Thomas Hallowell; Ryan W Morgan; Todd J Kilbaugh; Misun Hwang
Journal:  J Ultrasound Med       Date:  2021-09-15       Impact factor: 2.754

Review 6.  Pediatric In-Hospital Cardiac Arrest and Cardiopulmonary Resuscitation in the United States: A Review.

Authors:  Ryan W Morgan; Matthew P Kirschen; Todd J Kilbaugh; Robert M Sutton; Alexis A Topjian
Journal:  JAMA Pediatr       Date:  2021-03-01       Impact factor: 16.193

7.  Increased cerebral mitochondrial dysfunction and reactive oxygen species with cardiopulmonary bypass.

Authors:  Lindsay E Volk; Constantine D Mavroudis; Tiffany Ko; Thomas Hallowell; Nile Delso; Anna L Roberts; Jonathan Starr; William Landis; Yuxi Lin; Marco Hefti; Ryan W Morgan; Richard W Melchior; Tami M Rosenthal; Alexander Chappell; Douglas Fisher; Molly Dreher; Daniel J Licht; Jonathan Chen; J William Gaynor; Christopher E Mascio; Todd J Kilbaugh
Journal:  Eur J Cardiothorac Surg       Date:  2021-06-14       Impact factor: 4.191

8.  The physiologic response to rescue therapy with vasopressin versus epinephrine during experimental pediatric cardiac arrest.

Authors:  Julia C Slovis; Ryan W Morgan; William P Landis; Anna L Roberts; Alexandra M Marquez; Constantine D Mavroudis; Yuxi Lin; Tiffany Ko; Vinay M Nadkarni; Robert A Berg; Robert M Sutton; Todd J Kilbaugh
Journal:  Resusc Plus       Date:  2020-11-25

9.  Haemodynamic-directed cardiopulmonary resuscitation promotes mitochondrial fusion and preservation of mitochondrial mass after successful resuscitation in a pediatric porcine model.

Authors:  Kumaran Senthil; Ryan W Morgan; Marco M Hefti; Michael Karlsson; Andrew J Lautz; Constantine D Mavroudis; Tiffany Ko; Vinay M Nadkarni; Johannes Ehinger; Robert A Berg; Robert M Sutton; Francis X McGowan; Todd J Kilbaugh
Journal:  Resusc Plus       Date:  2021-04-29

10.  The association between early impairment in cerebral autoregulation and outcome in a pediatric swine model of cardiac arrest.

Authors:  Matthew P Kirschen; Ryan W Morgan; Tanmay Majmudar; William P Landis; Tiffany Ko; Ramani Balu; Sriram Balasubramanian; Alexis Topjian; Robert M Sutton; Robert A Berg; Todd J Kilbaugh
Journal:  Resusc Plus       Date:  2020-12-05
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