Post-Mortem Extracorporeal Membrane Oxygenation Perfusion Rat Model: A Feasibility Study

Author:

Deininger Matthias Manfred12ORCID,Benner Carl-Friedrich3ORCID,Strudthoff Lasse Johannes4ORCID,Leonhardt Steffen3ORCID,Bruells Christian Simon5ORCID,Marx Gernot1ORCID,Bleilevens Christian2ORCID,Breuer Thomas1ORCID

Affiliation:

1. Department of Intensive and Intermediate Care, Medical Faculty, RWTH Aachen University, 52074 Aachen, Germany

2. Department of Anesthesiology, Medical Faculty, RWTH Aachen University, 52074 Aachen, Germany

3. Medical Information Technology, Helmholtz-Institute for Biomedical Engineering, RWTH Aachen University, 52074 Aachen, Germany

4. Department of Cardiovascular Engineering, Institute of Applied Medical Engineering, Medical Faculty, RWTH Aachen University, 52074 Aachen, Germany

5. Department of Anesthesia, Intensive and Emergency Medicine, Marien Kliniken, 57072 Siegen, Germany

Abstract

The development of biomedical soft- or hardware frequently includes testing in animals. However, large efforts have been made to reduce the number of animal experiments, according to the 3Rs principle. Simultaneously, a significant number of surplus animals are euthanized without scientific necessity. The primary aim of this study was to establish a post-mortem rat perfusion model using extracorporeal membrane oxygenation (ECMO) in surplus rat cadavers and generate first post vivo results concerning the oxygenation performance of a recently developed ECMO membrane oxygenator. Four rats were euthanized and connected post-mortem to a venous–arterial ECMO circulation for up to eight hours. Angiographic perfusion proofs, blood gas analyses and blood oxygenation calculations were performed. The mean preparation time for the ECMO system was 791 ± 29 s and sufficient organ perfusion could be maintained for 463 ± 26 min, proofed via angiographic imaging and a mean femoral arterial pressure of 43 ± 17 mmHg. A stable partial oxygen pressure, a 73% rise in arterial oxygen concentration and an exponentially increasing oxygen extraction ratio up to 4.75 times were shown. Considering the 3Rs, the established post-mortal ECMO perfusion rat model using surplus animals represents a promising alternative to models using live animals. Given the preserved organ perfusion, its use could be conceivable for various biomedical device testing.

Funder

Clinician Scientist Program of the Faculty of Medicine RWTH Aachen University

Department of Intensive and Intermediate Care, Medical Faculty, RWTH Aachen University

Publisher

MDPI AG

Subject

General Veterinary,Animal Science and Zoology

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