Literature DB >> 30343315

A multicentre randomized pilot trial on the effectiveness of different levels of cooling in comatose survivors of out-of-hospital cardiac arrest: the FROST-I trial.

Esteban Lopez-de-Sa1, Miriam Juarez2, Eduardo Armada3, José C Sanchez-Salado4, Pedro L Sanchez5, Pablo Loma-Osorio6, Alessandro Sionis7, Maria C Monedero3, Manuel Martinez-Sellés2,8, Juán C Martín-Benitez9, Albert Ariza4, Aitor Uribarri5, José M Garcia-Acuña10, Patricia Villa11, Pablo J Perez12, Christian Storm13, Anne Dee14, Jose L Lopez-Sendon3.   

Abstract

PURPOSE: To obtain initial data on the effect of different levels of targeted temperature management (TTM) in out-of-hospital cardiac arrest (OHCA).
METHODS: We designed a multicentre pilot trial with 1:1:1 randomization to either 32 °C (n = 52), 33 °C (n = 49) or 34 °C (n = 49), via endovascular cooling devices during a 24-h period in comatose survivors of witnessed OHCA and initial shockable rhythm. The primary endpoint was the percentage of subjects surviving with good neurologic outcome defined by a modified Rankin Scale (mRS) score of ≤ 3, blindly assessed at 90 days.
RESULTS: At baseline, different proportions of patients who had received defibrillation administered by a bystander were assigned to groups of 32 °C (13.5%), 33 °C (34.7%) and 34 °C (28.6%; p = 0.03). The percentage of patients with an mRS ≤ 3 at 90 days (primary endpoint) was 65.3, 65.9 and 65.9% in patients assigned to 32, 33 and 34 °C, respectively, non-significant (NS). The multivariate Cox proportional hazards model identified two variables significantly related to the primary outcome: male gender and defibrillation by a bystander. Among the 43 patients who died before 90 days, 28 died following withdrawal of life-sustaining therapy, as follows: 7/16 (43.8%), 10/13 (76.9%) and 11/14 (78.6%) of patients assigned to 32, 33 and 34 °C, respectively (trend test p = 0.04). All levels of cooling were well tolerated.
CONCLUSIONS: There were no statistically significant differences in neurological outcomes among the different levels of TTM. However, future research should explore the efficacy of TTM at 32 °C. CLINICAL TRIAL REGISTRATION: ClinicalTrials.gov unique identifier: NCT02035839 ( http://clinicaltrials.gov ).

Entities:  

Keywords:  Brain injury; Cardiac arrest; Post-cardiac arrest syndrome; Resuscitation; Sudden death; Targeted temperature management

Mesh:

Year:  2018        PMID: 30343315     DOI: 10.1007/s00134-018-5256-z

Source DB:  PubMed          Journal:  Intensive Care Med        ISSN: 0342-4642            Impact factor:   17.440


  22 in total

1.  Moderate hypothermia after cardiac arrest of 17 minutes in dogs. Effect on cerebral and cardiac outcome.

Authors:  Y Leonov; F Sterz; P Safar; A Radovsky
Journal:  Stroke       Date:  1990-11       Impact factor: 7.914

2.  Therapeutic hypothermia after cardiac arrest: an advisory statement by the advanced life support task force of the International Liaison Committee on Resuscitation.

Authors:  J P Nolan; P T Morley; T L Vanden Hoek; R W Hickey; W G J Kloeck; J Billi; B W Böttiger; P T Morley; J P Nolan; K Okada; C Reyes; M Shuster; P A Steen; M H Weil; V Wenzel; R W Hickey; P Carli; T L Vanden Hoek; D Atkins
Journal:  Circulation       Date:  2003-07-08       Impact factor: 29.690

3.  European Resuscitation Council and European Society of Intensive Care Medicine Guidelines for Post-resuscitation Care 2015: Section 5 of the European Resuscitation Council Guidelines for Resuscitation 2015.

Authors:  Jerry P Nolan; Jasmeet Soar; Alain Cariou; Tobias Cronberg; Véronique R M Moulaert; Charles D Deakin; Bernd W Bottiger; Hans Friberg; Kjetil Sunde; Claudio Sandroni
Journal:  Resuscitation       Date:  2015-10       Impact factor: 5.262

4.  Improved prognosis after using mild hypothermia to treat cardiorespiratory arrest due to a cardiac cause: comparison with a control group.

Authors:  Sergio Castrejón; Marcelino Cortés; María L Salto; Luiz C Benittez; Rafael Rubio; Miriam Juárez; Esteban López de Sá; Héctor Bueno; Pedro L Sánchez; Francisco Fernández Avilés
Journal:  Rev Esp Cardiol       Date:  2009-07       Impact factor: 4.753

5.  Electrocardiographic changes during induced therapeutic hypothermia in comatose survivors after cardiac arrest.

Authors:  Pablo Salinas; Esteban Lopez-de-Sa; Laura Pena-Conde; Ana Viana-Tejedor; Juan Ramon Rey-Blas; Eduardo Armada; Jose Luis Lopez-Sendon
Journal:  World J Cardiol       Date:  2015-07-26

6.  Delayed awakening after cardiac arrest: prevalence and risk factors in the Parisian registry.

Authors:  Marine Paul; Wulfran Bougouin; Guillaume Geri; Florence Dumas; Benoit Champigneulle; Stéphane Legriel; Julien Charpentier; Jean-Paul Mira; Claudio Sandroni; Alain Cariou
Journal:  Intensive Care Med       Date:  2016-04-20       Impact factor: 17.440

7.  Mode of death after admission to an intensive care unit following cardiac arrest.

Authors:  Stephen Laver; Catherine Farrow; Duncan Turner; Jerry Nolan
Journal:  Intensive Care Med       Date:  2004-09-09       Impact factor: 17.440

8.  Beneficial effect of mild hypothermia and detrimental effect of deep hypothermia after cardiac arrest in dogs.

Authors:  V Weinrauch; P Safar; S Tisherman; K Kuboyama; A Radovsky
Journal:  Stroke       Date:  1992-10       Impact factor: 7.914

9.  Hypothermia in comatose survivors from out-of-hospital cardiac arrest: pilot trial comparing 2 levels of target temperature.

Authors:  Esteban Lopez-de-Sa; Juan R Rey; Eduardo Armada; Pablo Salinas; Ana Viana-Tejedor; Sandra Espinosa-Garcia; Mercedes Martinez-Moreno; Ervigio Corral; Jose Lopez-Sendon
Journal:  Circulation       Date:  2012-11-06       Impact factor: 29.690

10.  Therapeutic hypothermia after out-of-hospital cardiac arrest in children.

Authors:  Frank W Moler; Faye S Silverstein; Richard Holubkov; Beth S Slomine; James R Christensen; Vinay M Nadkarni; Kathleen L Meert; Amy E Clark; Brittan Browning; Victoria L Pemberton; Kent Page; Seetha Shankaran; Jamie S Hutchison; Christopher J L Newth; Kimberly S Bennett; John T Berger; Alexis Topjian; Jose A Pineda; Joshua D Koch; Charles L Schleien; Heidi J Dalton; George Ofori-Amanfo; Denise M Goodman; Ericka L Fink; Patrick McQuillen; Jerry J Zimmerman; Neal J Thomas; Elise W van der Jagt; Melissa B Porter; Michael T Meyer; Rick Harrison; Nga Pham; Adam J Schwarz; Jeffrey E Nowak; Jeffrey Alten; Derek S Wheeler; Utpal S Bhalala; Karen Lidsky; Eric Lloyd; Mudit Mathur; Samir Shah; Theodore Wu; Andreas A Theodorou; Ronald C Sanders; J Michael Dean
Journal:  N Engl J Med       Date:  2015-04-25       Impact factor: 91.245

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  16 in total

1.  Focus on post-resuscitation care.

Authors:  Claudio Sandroni; Alain Combes; Jerry P Nolan
Journal:  Intensive Care Med       Date:  2019-06-25       Impact factor: 17.440

Review 2.  Neurological Prognostication After Cardiac Arrest in the Era of Target Temperature Management.

Authors:  Maximiliano A Hawkes; Alejandro A Rabinstein
Journal:  Curr Neurol Neurosci Rep       Date:  2019-02-09       Impact factor: 5.081

3.  Effect of Moderate vs Mild Therapeutic Hypothermia on Mortality and Neurologic Outcomes in Comatose Survivors of Out-of-Hospital Cardiac Arrest: The CAPITAL CHILL Randomized Clinical Trial.

Authors:  Michel Le May; Christina Osborne; Juan Russo; Derek So; Aun Yeong Chong; Alexander Dick; Michael Froeschl; Christopher Glover; Benjamin Hibbert; Jean-François Marquis; Sophie De Roock; Marino Labinaz; Jordan Bernick; Shawn Marshall; Ronnen Maze; George Wells
Journal:  JAMA       Date:  2021-10-19       Impact factor: 56.272

4.  Through the Looking Glass: The Paradoxical Evolution of Targeted Temperature Management for Comatose Survivors of Cardiac Arrest.

Authors:  Salvatore A D'Amato; W Taylor Kimberly; Stephan A Mayer
Journal:  Neurotherapeutics       Date:  2022-10-17       Impact factor: 6.088

5.  European Resuscitation Council and European Society of Intensive Care Medicine guidelines 2021: post-resuscitation care.

Authors:  Jerry P Nolan; Claudio Sandroni; Bernd W Böttiger; Alain Cariou; Tobias Cronberg; Hans Friberg; Cornelia Genbrugge; Kirstie Haywood; Gisela Lilja; Véronique R M Moulaert; Nikolaos Nikolaou; Theresa Mariero Olasveengen; Markus B Skrifvars; Fabio Taccone; Jasmeet Soar
Journal:  Intensive Care Med       Date:  2021-03-25       Impact factor: 17.440

6.  New challenges in cardiac intensive care units.

Authors:  Enzo Lüsebrink; Antonia Kellnar; Clemens Scherer; Kathrin Krieg; Mathias Orban; Tobias Petzold; Sven Peterss; Stefan Kääb; Stefan Brunner; Daniel Braun; Christian Hagl; Jörg Hausleiter; Steffen Massberg; Martin Orban
Journal:  Clin Res Cardiol       Date:  2021-05-09       Impact factor: 5.460

Review 7.  Targeted temperature management and early neuro-prognostication after cardiac arrest.

Authors:  Songyu Chen; Brittany Bolduc Lachance; Liang Gao; Xiaofeng Jia
Journal:  J Cereb Blood Flow Metab       Date:  2021-01-14       Impact factor: 6.200

Review 8.  [Targeted temperature management after cardiac arrest : What is new?]

Authors:  Elena Kainz; Marlene Fischer
Journal:  Anaesthesist       Date:  2022-01-20       Impact factor: 1.041

Review 9.  Which Target Temperature for Post-Anoxic Brain Injury? A Systematic Review from "Real Life" Studies.

Authors:  Andrea Minini; Filippo Annoni; Lorenzo Peluso; Elisa Gouvêa Bogossian; Jacques Creteur; Fabio Silvio Taccone
Journal:  Brain Sci       Date:  2021-02-03

10.  Cost-Effectiveness Analysis of Intravascular Targeted Temperature Management after Cardiac Arrest in England.

Authors:  Mehdi Javanbakht; Atefeh Mashayekhi; Mohsen Rezaei Hemami; Michael Branagan-Harris; Thomas R Keeble; Mohsen Yaghoubi
Journal:  Pharmacoecon Open       Date:  2022-05-03
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