Publication: Simulating physiological blood maintenance: a dialysis-integrated in vitro flow loop for realistic hemocompatibility evaluation of devices
Program
KU Authors
Co-Authors
Günaydın, İ.
Pekkan, K.
Yıldız, Y.
Editor & Affiliation
Compiler & Affiliation
Translator
Other Contributor
Date
Language
eng
Type
Embargo Status
N/A
Journal Title
Journal ISSN
Volume Title
Alternative Title
Abstract
Conventional blood flow-loop systems, employing animal or rarely fresh human blood, used in in vitro testing of blood-contact devices fail to simulate the actual physiological conditions. This study aims to develop a metabolically sustainable blood flow loop system to be used in cardiovascular device testing, by integrating nutrition, oxygenation, and dialysis modules. Two flow loop systems with human blood were compared: (1) control circuit with oxygenation and (2) experimental circuit with the addition of nutrition, oxygenation, and dialysis modules. Blood was circulated for 12 and 48 h, and hemolysis (NIH, pfHb, bilirubin, haptoglobin), blood gases (pH, glucose, lactate), inflammation (IL-8, TNF-α, C3a), coagulation (fibrinogen, TAT), platelet/endothelial activation (β-TG, vWF), and ferritin levels were measured over time. While pH decrease, lactate increase, and inflammatory/coagulation markers increased in the control group, these parameters were stable or decreased in the dialysis group. NIH was 77%–81% lower in dialysis, and vWF decreased 55%–73% in dialysis while increasing in control ( p
Source
Publisher
SAGE
Subject
Engineering, biomedical, Transplantation
Citation
Has Part
Source
The International Journal of Artificial Organs
Book Series Title
Edition
DOI
10.1177/03913988261445012
item.page.datauri
Link
Rights
N/A
Copyrights Note
Creative Commons license
Except where otherwised noted, this item's license is described as N/A
