Literature DB >> 30688296

Normothermic Ex Situ Heart Perfusion in Working Mode: Assessment of Cardiac Function and Metabolism.

Sanaz Hatami1, Christopher W White1, Martin Ondrus1, Xiao Qi1, Max Buchko1, Sayed Himmat1, Lily Lin2, Katie Cameron3, David Nobes4, Hyun-Joong Chung5, Jayan Nagendran6, Darren H Freed7.   

Abstract

The current standard method for organ preservation (cold storage, CS), exposes the heart to a period of cold ischemia that limits the safe preservation time and increases the risk of adverse post-transplantation outcomes. Moreover, the static nature of CS does not allow for organ evaluation or intervention during the preservation interval. Normothermic ex situ heart perfusion (ESHP) is a novel method for preservation of the donated heart that minimizes cold ischemia by providing oxygenated, nutrient-rich perfusate to the heart. ESHP has been shown to be non-inferior to CS in the preservation of standard-criteria donor hearts and has also facilitated the clinical transplantation of the hearts donated after the circulatory determination of death. Currently, the only available clinical ESHP device perfuses the heart in an unloaded, non-working state, limiting assessments of myocardial performance. Conversely, ESHP in working mode provides the opportunity for comprehensive evaluation of cardiac performance by assessment of functional and metabolic parameters under physiologic conditions. Moreover, earlier experimental studies have suggested that ESHP in working mode may result in improved functional preservation. Here, we describe the protocol for ex situ perfusion of the heart in a large mammal (porcine) model, which is reproducible for different animal models and heart sizes. The software program in this ESHP apparatus allows for real-time and automated control of the pump speed to maintain desired aortic and left atrial pressure and evaluates a variety of functional and electrophysiological parameters with minimal need for supervision/manipulation.

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Year:  2019        PMID: 30688296     DOI: 10.3791/58430

Source DB:  PubMed          Journal:  J Vis Exp        ISSN: 1940-087X            Impact factor:   1.355


  3 in total

1.  A Multi-Mode System for Myocardial Functional and Physiological Assessment during Ex Situ Heart Perfusion.

Authors:  Thomas Duignan; Alvise Guariento; Ilias P Doulamis; Takashi Kido; William L Regan; Mossab Saeed; David M Hoganson; Sitaram M Emani; Pedro J Del Nido; James D McCully; Gregory S Matte
Journal:  J Extra Corpor Technol       Date:  2020-12

Review 2.  Inflammation and Oxidative Stress in the Context of Extracorporeal Cardiac and Pulmonary Support.

Authors:  Sanaz Hatami; Joshua Hefler; Darren H Freed
Journal:  Front Immunol       Date:  2022-03-04       Impact factor: 7.561

3.  A novel nonlinear afterload for ex vivo heart evaluation: Porcine experimental results.

Authors:  Henry Pigot; Kristian Soltesz; Audrius Paskevicius; Qiuming Liao; Trygve Sjöberg; Stig Steen
Journal:  Artif Organs       Date:  2022-05-20       Impact factor: 2.663

  3 in total

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