ASAIO Journal · 2020 · 10 citations · 10 references
MechanobiologyPulmonary Arterial HypertensionHeart FailureLeft Pulmonary ArteryPulmonary CirculationPhysiologyRight Ventricular HypertrophyPulmonary PhysiologyMechanical Circulatory SupportPulmonary HypertensionCardiovascular PhysiologyBiomedical EngineeringPublic HealthCardiopulmonary TransplantationMedicineCardiologyPulmonary Vascular Disease
Pulmonary hypertension (PH) is a progressive disease that leads to cardiopulmonary dysfunction and right heart failure from pressure and volume overloading of the right ventricle (RV). Mechanical cardiopulmonary support has theoretical promise as a bridge to organ transplant or destination therapy for these patients. Solving the challenges of mechanical cardiopulmonary support for PH and RV failure requires its testing in a physiologically relevant animal model. Previous PH models in large animals have used pulmonary bead embolization, which elicits unpredictable inflammatory responses and has a high mortality rate. We describe a step-by-step guide for inducing pulmonary hypertension and right ventricular hypertrophy (PH-RVH) in sheep by left pulmonary artery (LPA) ligation combined with progressive main pulmonary artery (MPA) banding. This approach provides a controlled method to regulate RV afterload as tolerated by the animal to achieve PH-RVH, while reducing acute mortality. This animal model can facilitate evaluation of mechanical support devices for PH and RV failure.
10
Piglet Model of Chronic Pulmonary Hypertension
Olaf Mercier, Adriano Tivane, Peter Dorfmüller et al. · Pulmonary Circulation · 2013 · 47 citations · Full text
Fourteen Day In Vivo Testing of a Compliant Thoracic Artificial Lung
David J. Skoog, Joshua R. Pohlmann, David S. Demos et al. · ASAIO Journal · 2017 · 36 citations · Full text
Large Animal Model of Chronic Pulmonary Hypertension
Hitoshi Sato, Candice M. Hall, G. W. Griffith et al. · ASAIO Journal · 2008 · 29 citations