Autor: |
Priya Mohindra, Justin X. Zhong, Qizhi Fang, Darnell L. Cuylear, Cindy Huynh, Huiliang Qiu, Dongwei Gao, Bhushan N. Kharbikar, Xiao Huang, Matthew L. Springer, Randall J. Lee, Tejal A. Desai |
Jazyk: |
angličtina |
Rok vydání: |
2023 |
Předmět: |
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Zdroj: |
npj Regenerative Medicine, Vol 8, Iss 1, Pp 1-14 (2023) |
Druh dokumentu: |
article |
ISSN: |
2057-3995 |
DOI: |
10.1038/s41536-023-00336-w |
Popis: |
Abstract Heart failure (HF) remains a global public health burden and often results following myocardial infarction (MI). Following injury, cardiac fibrosis forms in the myocardium which greatly hinders cellular function, survival, and recruitment, thus severely limits tissue regeneration. Here, we leverage biophysical microstructural cues made of hyaluronic acid (HA) loaded with the anti-fibrotic proteoglycan decorin to more robustly attenuate cardiac fibrosis after acute myocardial injury. Microrods showed decorin incorporation throughout the entirety of the hydrogel structures and exhibited first-order release kinetics in vitro. Intramyocardial injections of saline (n = 5), microrods (n = 7), decorin microrods (n = 10), and free decorin (n = 4) were performed in male rat models of ischemia-reperfusion MI to evaluate therapeutic effects on cardiac remodeling and function. Echocardiographic analysis demonstrated that rats treated with decorin microrods (5.21% ± 4.29%) exhibited significantly increased change in ejection fraction (EF) at 8 weeks post-MI compared to rats treated with saline (−4.18% ± 2.78%, p |
Databáze: |
Directory of Open Access Journals |
Externí odkaz: |
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