羟基烷酸
再生(生物学)
链条(单位)
业务
化学
内科学
医学
生物
细胞生物学
物理
遗传学
天文
细菌
作者
Qasim A. Majid,Pragati Pandey,Mohamed Bellahcene,Christopher L. Grigsby,Molly M. Stevens,Virpi Talman,Daniel J. Stuckey,Siân E. Harding,Ipsita Roy,Gábor Földes
出处
期刊:Research Square - Research Square
日期:2024-09-25
标识
DOI:10.21203/rs.3.rs-5140069/v1
摘要
Abstract Human pluripotent stem cell-derived cardiomyocytes (hPSC-CMs) hold promise in averting functional decline towards heart failure following myocardial infarction (MI). However, challenges persist in retaining these cells within the myocardium. We developed a novel three-dimensional cardiac patch and evaluated its potential to prevent post-MI functional decline. For the first time, melt electrowritten (MEW), structurally anisotropic scaffolds were derived from high molecular weight, medium chain-length polyhydroxyalkanoates (MCL-PHAs). These scaffolds supported hPSC-CMs, facilitating their rapid structural and functional maturation in vitro. Different cellular combinations were seeded on the scaffolds and layered to create cardiac patches. These were well-accepted in a murine MI model, without capsule formation. Patches containing hPSC-derived cardiac microvascular-like endothelial cells initiated vascular regeneration; although, this did not prevent post-MI functional decline. This novel advancement enabled the production of MCL-PHA-based MEW-cardiac patches that matured hPSC-CMs and promoted vascular regeneration, offering potential for future improvement in cardiac function through enhanced hPSC-CM retention.
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