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Ultrafast Hypothermia Selectively Mitigates the Early Humoral Response After Cardiac Arrest

Authors :
Emilie Boissady
Matthias Kohlhauer
Fanny Lidouren
Hakim Hocini
Cécile Lefebvre
Sophie Chateau‐Jouber
Nicolas Mongardon
Nicolas Deye
Alain Cariou
Philippe Micheau
Bijan Ghaleh
Renaud Tissier
Source :
Journal of the American Heart Association: Cardiovascular and Cerebrovascular Disease, Vol 9, Iss 23 (2020)
Publication Year :
2020
Publisher :
Wiley, 2020.

Abstract

Background Total liquid ventilation (TLV) has been shown to prevent neurological damage though ultrafast cooling in animal models of cardiac arrest. We investigated whether its neuroprotective effect could be explained by mitigation of early inflammatory events. Methods and Results Rabbits were submitted to 10 minutes of ventricular fibrillation. After resuscitation, they underwent normothermic follow‐up (control) or ultrafast cooling by TLV and hypothermia maintenance for 3 hours (TLV). Immune response, survival, and neurological dysfunction were assessed for 3 days. TLV improved neurological recovery and reduced cerebral lesions and leukocyte infiltration as compared with control (eg, neurological dysfunction score=34±6 versus 66±6% at day 1, respectively). TLV also significantly reduced interleukin‐6 blood levels during the hypothermic episode (298±303 versus 991±471 pg/mL in TLV versus control at 3 hours after resuscitation, respectively), but not after rewarming (752±563 versus 741±219 pg/mL in TLV versus control at 6 hours after resuscitation, respectively). In vitro assays confirmed the high temperature sensitivity of interleukin‐6 secretion. Conversely, TLV did not modify circulating high‐mobility group box 1 levels or immune cell recruitment into the peripheral circulation. The link between interleukin‐6 early transcripts (8 hours). Conclusions The neuroprotective effect of hypothermic TLV was associated with a mitigation of humoral interleukin‐6 response. A temperature‐dependent attenuation of immune cell reactivity during the early phase of the post–cardiac arrest syndrome could explain the potent effect of rapid hypothermia. Registration URL: https://www.clinicaltrials.gov; Unique identifier: NCT00999583.

Details

Language :
English
ISSN :
20479980
Volume :
9
Issue :
23
Database :
Directory of Open Access Journals
Journal :
Journal of the American Heart Association: Cardiovascular and Cerebrovascular Disease
Publication Type :
Academic Journal
Accession number :
edsdoj.8256e4436864b33ad902914c7347c05
Document Type :
article
Full Text :
https://doi.org/10.1161/JAHA.120.017413