Magnetic Capture of Blood Outgrowth Endothelial Cells to the Luminal Surface of Magnetizable Stent-Grafts Promotes Healing in a Porcine Pseudoaneurysm Model
Document Type
Article
Publication Date
2-2026
Publisher
Elsevier
Source Publication
Acta Biomaterialia
Source ISSN
1742-7061
Original Item ID
DOI: 10.1016/j.actbio.2025.03.040
Abstract
Stent-grafts are endovascular devices used to treat many arterial conditions including carotid artery pseudoaneurysms. Stent-grafts are composed of a metal stent backbone covered by a synthetic membrane to form a conduit. Their deployment results in a large surface area of synthetic material in contact with blood, which increases the risk of thrombosis and occlusion of the device. The more rapidly the blood contacting surface becomes covered with an endothelium, acting as a barrier between the device and blood flow, the lower the risk of these complications. One approach to promote the rapid endothelialization of a stent-graft is with magnetic cell capture. In the current work, we develop magnetizable stent-grafts and generate autologous blood outgrowth endothelial cells from peripheral blood. The cells are labeled with superparamagnetic iron oxide nanoparticles to impart magnetic properties. The ability of the magnetic stent-grafts to occlude pseudoaneurysms and magnetically capture delivered cells is investigated relative to non-magnetic stent-graft controls in a porcine carotid pseudoaneurysm model. We demonstrated that at the study endpoints, the control and magnetic stent-grafts had occluded 7/9 and 9/9 of the pseudoaneurysms, respectively. Histological analysis demonstrated a higher degree of magnetic cell capture, endothelialization, and luminal tissue coverage in the magnetic stent-grafts compared to their non-magnetic controls. At the study endpoints, 2/9 control stent-grafts had completely thrombosed while 0/9 magnetic stent-grafts had. In conclusion, the magnetic stent-grafts facilitated the magnetic capture of blood outgrowth endothelial cells, which appeared to improve biological outcomes relative to non-magnetic stent-graft controls.
Recommended Citation
Oliver, Alexander A.; Carlson, Kent D.; Price, Colin; Banaskiewicz, Karolina; Benike, Amy; Dai, Daying; Brown, Robert A.; Sandhu, Gurpreet S.; Kadirvel, Ramanathan; Guillory, Roger J. II; Tefft, Brandon J.; Kallmes, David F.; Morrison, Jonathan J.; and Dragomir-Daescu, Dan, "Magnetic Capture of Blood Outgrowth Endothelial Cells to the Luminal Surface of Magnetizable Stent-Grafts Promotes Healing in a Porcine Pseudoaneurysm Model" (2026). Biomedical Engineering Faculty Research and Publications. 744.
https://epublications.marquette.edu/bioengin_fac/744
Comments
Acta Biomaterialia, Vol. 211 (February 2026): 204-215. DOI.