Soft robotic platform for progressive and reversible aortic constriction in a small-animal model.
Sci Robot
; 9(91): eadj9769, 2024 06 12.
Article
in En
| MEDLINE
| ID: mdl-38865476
ABSTRACT
Our understanding of cardiac remodeling processes due to left ventricular pressure overload derives largely from animal models of aortic banding. However, these studies fail to enable control over both disease progression and reversal, hindering their clinical relevance. Here, we describe a method for progressive and reversible aortic banding based on an implantable expandable actuator that can be finely tuned to modulate aortic banding and debanding in a rat model. Through catheterization, imaging, and histologic studies, we demonstrate that our platform can recapitulate the hemodynamic and structural changes associated with pressure overload in a controllable manner. We leveraged soft robotics to enable noninvasive aortic debanding, demonstrating that these changes can be partly reversed because of cessation of the biomechanical stimulus. By recapitulating longitudinal disease progression and reversibility, this animal model could elucidate fundamental mechanisms of cardiac remodeling and optimize timing of intervention for pressure overload.
Full text:
1
Collection:
01-internacional
Database:
MEDLINE
Main subject:
Aorta
/
Disease Models, Animal
Limits:
Animals
Language:
En
Journal:
Sci Robot
Year:
2024
Document type:
Article
Affiliation country:
United States
Country of publication:
United States