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  3. Development of an ultra mini-oxygenator for use in low-volume, buffer-perfused preparations

Development of an ultra mini-oxygenator for use in low-volume, buffer-perfused preparations

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DOI
10.7892/boris.7116
Publisher DOI
10.5301/ijao.5000075
PubMed ID
22505202
Abstract
Introduction: Small animal models are widely used in basic research. However, experimental systems requiring extracorporeal circuits are frequently confronted with limitations related to equipment size. This is particularly true for oxygenators in systems with limited volumes. Thus we aimed to develop and validate an ultra mini-oxygenator for low-volume, buffer-perfused systems. Methods: We have manufactured a series of ultra mini-oxygenators with approximately 175 aligned, microporous, polypropylene hollow fibers contained inside a shell, which is sealed at each of the two extremities to isolate perfusate and gas compartments. With this construction, gas passes through hollow fibers, while perfusate circulates around fibers. Performance of ultra mini-oxygenators (oxygen partial pressure (PO2 ), gas and perfusate flow, perfusate pressure and temperature drop) were assessed with modified Krebs-Henseleit buffer in an in vitro perfusion circuit and an ex vivo rat heart preparation. Results: Mean priming volume of ultra mini-oxygenators was 1.2±0.5 mL and, on average, 86±6% of fibers were open (n=17). In vitro, effective oxygenation (PO2=400-500 mmHg) was achieved for all flow rates up to 50 mL/min and remained stable for at least 2 hours (n=5). Oxygenation was also effective and stable (PO2=456±40 mmHg) in the isolated heart preparation for at least 60 minutes ("venous" PO2=151±11 mmHg; n=5). Conclusions: We have established a reproducible procedure for fabrication of ultra mini-oxygenators, which provide reliable and stable oxygenation for at least 60-120 min. These oxygenators are especially attractive for pre-clinical protocols using small, rather than large, animals.
Date Issued
2012
Publication Type
Article
Subject(s)
600 Technology > 610 Medicine & health
500 Science > 570 Life sciences; biology
Language(s)
en
Author(s)
Berner, Marion  
Universitätsklinik für Thoraxchirurgie  
Clément, David  
Departement Klinische Forschung, Forschungsgruppe Herz- und Gefässchirurgie  
Stadelmann, Mathieu  
Universitätsklinik für Herz- und Gefässchirurgie  
Kistler, Michael  
Institut für chirurgische Technologien und Biomechanik (ISTB)  
Boone, Yves
Carrel, Thierry  
Universitätsklinik für Herz- und Gefässchirurgie  
Tevaearai, Hendrik  
Universitätsklinik für Herz- und Gefässchirurgie  
Henning Longnus, Sarah  
Universitätsklinik für Herz- und Gefässchirurgie  
Additional Credits
Departement Klinische Forschung, Forschungsgruppe Herz- und Gefässchirurgie  
Institut für chirurgische Technologien und Biomechanik (ISTB)  
Universitätsklinik für Thoraxchirurgie  
Universitätsklinik für Herz- und Gefässchirurgie  
Journal
International journal of artificial organs
Publisher
Wichtig Editore
ISSN
0391-3988
Access(Rights)
restricted
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