Evidence map›Paper›PMID 42678614›Full record

ArticleIntensive care medicine experimental2026

Arterial cannulation site and ventilation strategy modulate cerebral injury in a rat cardiopulmonary bypass model of Harlequin syndrome.

Chadi Aludaat, Gabriel Saiydoun, Saade Saade, Jean-Marc Baste, Vincent Magnan, Fabien Doguet, Fabrice Bauer, Jeremy Bellien, Paul Mulder, Emmanuel Besnier

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Article in Intensive care medicine experimental, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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4 · The record

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5 · Who and what money

Authors and funding

10 authors.

Chadi AludaatDepartment of Cardiothoracic Surgery, Rouen University Hospital, Rouen, 76000, France. aludaat.chadi@live.fr.ORCID http://orcid.org/0000-0002-9825-3852
Gabriel SaiydounDepartment of Cardiothoracic Surgery, AP-HP, La Pitié-Salpêtrière Hospital, Sorbonne University, Paris, 75013, France.
Saade SaadeDepartment of Cardiothoracic Surgery, Strasbourg University Hospital, Strasbourg, 67000, France.
Jean-Marc BasteDepartment of Cardiothoracic Surgery, Rouen University Hospital, Rouen, 76000, France.
Vincent MagnanDepartment of Cardiothoracic Surgery, Rouen University Hospital, Rouen, 76000, France.
Fabien DoguetDepartment of Cardiac Surgery, Institut Jacques Cartier, Massy, 91300, France.
Fabrice BauerUniversité Paris-Saclay, Faculté de Médecine, HPPIT, Pulmonary Hypertension: Pathophysiology and Novel Therapies, Le Kremlin-Bicêtre, 94270, France.
Jeremy BellienNormandie Univ, UNIROUEN, INSERM U1096, FHU REMOD-VHF, Rouen, France.
Paul MulderNormandie Univ, UNIROUEN, INSERM U1096, FHU REMOD-VHF, Rouen, France.
Emmanuel BesnierNormandie Univ, UNIROUEN, INSERM U1096, FHU REMOD-VHF, Rouen, France.

Funding

No grant is acknowledged in the PubMed record.

6 · The paper itself

Abstract

backgroundDifferential hypoxemia, or Harlequin syndrome, is a critical concern during veno-arterial extracorporeal membrane oxygenation (VA-ECMO), especially when femoral artery cannulation delivers retrograde flow. This phenomenon may impair cerebral oxygenation and promote brain injury. We investigated whether the arterial cannulation site and ventilation strategy influence acute cerebral injury in a rat cardiopulmonary bypass (CPB) model.

methodsForty male Wistar rats were randomized into four groups (n = 10 each) according to the arterial cannulation site (carotid [anterograde, A-CPB] or femoral [retrograde, R-CPB]) and ventilation strategy (normal [NV, 100% tidal volume] or low [LV, 50% tidal volume]). All underwent 60 min of CPB at 50-60 mL/kg/min. Systemic hemodynamics, arterial blood gases, and plasma biomarkers of cerebral injury (neuron-specific enolase [NSE] and S100B) were measured. Postmortem brain water content was quantified to assess edema.

resultsMean arterial pressure and heart rate were comparable across groups. Oxygenation (PaO₂) was preserved, whereas PaCO₂ was higher under low ventilation (A-CPB LV vs. A-CPB NV, p = 0.002; R-CPB LV vs. R-CPB NV, p = 0.030). Lactate levels increased significantly in the R-CPB LV group compared with the A-CPB NV group (p = 0.004). At 60 min, NSE and S100B were markedly elevated in the R-CPB LV group compared with the other groups (p < 0.001). Regional brain edema was significantly greater in the cerebellum and left telencephalon of R-CPB LV animals (p < 0.001 and p = 0.002, respectively), whereas other regions showed no significant changes.

conclusionsFemoral retrograde perfusion, particularly under reduced ventilation, exacerbates biochemical and structural markers of cerebral injury in a rat CPB model. These findings reproduce key pathophysiological features of Harlequin syndrome and emphasize the importance of proximal cannulation strategies and optimized ventilation to preserve cerebral oxygen delivery during VA-ECMO support.

Indexed as

Cardiopulmonary bypassCerebral injuryExtracorporeal membrane oxygenationFemoral cannulationHarlequin syndrome

Identifiers

PMID42678614
PMCPMC13534404

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