2023
DOI: 10.3389/fbioe.2023.1101622
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Biomimetic cardiac tissue chip and murine arteriovenous fistula models for recapitulating clinically relevant cardiac remodeling under volume overload conditions

Abstract: Cardiovascular events are the primary cause of death among dialysis patients. While arteriovenous fistulas (AVFs) are the access of choice for hemodialysis patients, AVF creation can lead to a volume overload (VO) state in the heart. We developed a three-dimensional (3D) cardiac tissue chip (CTC) with tunable pressure and stretch to model the acute hemodynamic changes associated with AVF creation to complement our murine AVF model of VO. In this study, we aimed to replicate the hemodynamics of murine AVF model… Show more

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Cited by 2 publications
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“…By exposing these tissues to 10 mmHg pressure at 1 Hz for 4 days, not only CFs replied undergoing a myofibroblast switch, but also collagen type 1, TGFB1, and CCR2 resulted to be upregulated, thus recapitulating the typical hallmarks of cardiac fibrosis, included inflammation and oxidative stress. Analogous observations related to this in vitro hybrid-species system were collected by the same authors from an in vivo murine model of arteriovenous fistula ( Waldrop et al, 2023 ).…”
Section: The Shortening Gap Between Preclinical Research and Clinical...mentioning
confidence: 85%
“…By exposing these tissues to 10 mmHg pressure at 1 Hz for 4 days, not only CFs replied undergoing a myofibroblast switch, but also collagen type 1, TGFB1, and CCR2 resulted to be upregulated, thus recapitulating the typical hallmarks of cardiac fibrosis, included inflammation and oxidative stress. Analogous observations related to this in vitro hybrid-species system were collected by the same authors from an in vivo murine model of arteriovenous fistula ( Waldrop et al, 2023 ).…”
Section: The Shortening Gap Between Preclinical Research and Clinical...mentioning
confidence: 85%