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Updated: Feb 4, 2026

Cardiopulmonary Bypass in a Mouse Model: A Novel Approach
Published on: September 22, 2017
Mechanical ventilation strategies and lung protection during cardiopulmonary bypass: A scoping review
Yue Wang1,2,3, Sijie Lu2,3, Xiaoqian Zhang2,3
1Healthy Examination & Management Center, The Second Hospital & Clinical Medical School, Lanzhou University, Lanzhou, China.
Abstract:
ObjectiveCardiopulmonary bypass (CPB), which induces pulmonary injury, significantly impacts the quality of life in patients undergoing cardiac surgery. Preventing and treating pulmonary complications has become a critical clinical issue. Optimizing ventilation strategies during the preoperative, intraoperative, and postoperative stages is essential for adequate lung protection and preventing CPB-related pulmonary injury.MethodsA comprehensive search of multiple databases including PubMed, Embase, and the Cochrane Library was conducted. After removing the duplicate studies, full-text review was performed, and all studies that reported mechanical ventilation strategies and lung protection during CPB were included.ResultsThis review systematically examines ventilation strategies during CPB, outlining optimized parameters and pharmacologic approaches across pre-, intra-, and post-CPB phases to reduce lung injury. Various modes - including volume control ventilation (VCV), pressure control ventilation (PCV), and pressure-controlled ventilation-volume guaranteed (PCV-VG) - demonstrate unique benefits and limitations. When combined with protective measures (low tidal volume [LTV], moderate positive end-expiratory pressure [PEEP], and recruitment maneuvers), they show clinical efficacy in lung protection. Pharmacologic agents like ambroxol, neutrophil elastase inhibitors, and sivelestat further enhance protection, underscoring the promise of combined mechanical-pharmacological strategies against CPB-induced lung injury.ConclusionsA comprehensive approach integrating individualized ventilation management and pharmacological intervention is key to reducing CPB-induced lung injury, enhancing postoperative respiratory function, and improving patient outcomes.
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