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PMID: 38215762 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Multi-Method Investigation of Blood Damage Induced By Blood Pumps in Different Clinical Support Modes.

ASAIO journal (American Society for Artificial Internal Organs : 1992) ·Vol. 70 ·No. 4 ·2024-00-01 ·页码 280-292

Li Y, Liu X, Sun A, Deng X, Chen Z, Fan Y

Abstract

To investigate the effects of blood pumps operated in different modes on nonphysiologic flow patterns, cell and protein function, and the risk of bleeding, thrombosis, and hemolysis, an extracorporeal blood pump (CentriMag) was operated in three clinical modalities including heart failure (HF), venous-venous (V-V) extracorporeal membrane oxygenation (ECMO), and venous-arterial (V-A) ECMO. Computational fluid dynamics (CFD) methods and coupled hemolysis models as well as recently developed bleeding and thrombosis models associated with changes in platelet and von Willebrand factor (vWF) function were used to predict hydraulic performance and hemocompatibility. The V-A ECMO mode had the highest flow losses and shear stress levels, the V-V ECMO mode was intermediate, and the HF mode was the lowest. Different nonphysiologic flow patterns altered cell/protein morphology and function. The V-A ECMO mode resulted in the highest levels of platelet activation, receptor shedding, vWF unfolding, and high molecular weight multimers vWF (HMWM-vWF) degradation, leading to the lowest platelet adhesion and the highest vWF binding capacity, intermediate in the V-V ECMO mode, and opposite in the HF mode. The V-A ECMO mode resulted in the highest risk of bleeding, thrombosis, and hemolysis, with the V-V ECMO mode intermediate and the HF mode lowest. These findings are supported by published experimental or clinical statistics. Further studies found that secondary blood flow passages resulted in the highest risk of blood damage. Nonphysiologic blood flow patterns were strongly associated with cell and protein function changing, blood damage, and complications.

MeSH 主题词
Humans von Willebrand Factor/metabolism Hemolysis Hemorrhage/etiology Platelet Activation Thrombosis Heart Failure/complications
化学物质
von Willebrand Factor
作者与单位
共 6 位作者,点击展开单位 / ORCID
Li Yuan
From the Key Laboratory of Biomechanics and Mechanobiology (Beihang University), Ministry of Education, Beijing Advanced Innovation Center for Biomedical Engineering, School of Biological Science and Medical Engineering, Beihang University, Beijing, China.
Liu Xinyu
Sun Anqiang
Deng Xiaoyan
Chen Zengsheng ORCID
Fan Yubo
Article Info
Journal
ASAIO journal (American Society for Artificial Internal Organs : 1992)
Abbr.
ASAIO J
ISSN
1538-943X
Published
2024-00-01
电子出版
2024-00-12
页码
280-292
Language
English
Country/Region
United States
NLM ID
9204109
基金资助
National Key R&amp
D Program of China · Grant no. 2020YFC0862900, 2020YFC0862902, 2020YFC0862904 and 2020YFC0122203
Beijing Municipal Science and Technology Project · Grant no. Z201100007920003
the National Natural Science Foundation of China · Grant no. 32071311
Beijing Natural Science Foundation · M22026
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