脚手架
生物医学工程
心功能曲线
生物吸附支架
组织工程
生物相容性材料
心肌梗塞
材料科学
医学
心脏病学
心力衰竭
经皮冠状动脉介入治疗
作者
Miles Montgomery,Samad Ahadian,Locke Davenport Huyer,Mauro Lo Rito,Robert Civitarese,Rachel D. Vanderlaan,Jun Wu,Lewis A. Reis,Abdul Momen,Saeed Akbari,Aric Pahnke,Ren‐Ke Li,Christopher A. Caldarone,Milica Radisic
出处
期刊:Nature Materials
[Springer Nature]
日期:2017-08-14
卷期号:16 (10): 1038-1046
被引量:335
摘要
Despite great progress in engineering functional tissues for organ repair, including the heart, an invasive surgical approach is still required for their implantation. Here, we designed an elastic and microfabricated scaffold using a biodegradable polymer (poly(octamethylene maleate (anhydride) citrate)) for functional tissue delivery via injection. The scaffold’s shape memory was due to the microfabricated lattice design. Scaffolds and cardiac patches (1 cm × 1 cm) were delivered through an orifice as small as 1 mm, recovering their initial shape following injection without affecting cardiomyocyte viability and function. In a subcutaneous syngeneic rat model, injection of cardiac patches was equivalent to open surgery when comparing vascularization, macrophage recruitment and cell survival. The patches significantly improved cardiac function following myocardial infarction in a rat, compared with the untreated controls. Successful minimally invasive delivery of human cell-derived patches to the epicardium, aorta and liver in a large-animal (porcine) model was achieved. Cardiac repair usually requires highly invasive interventional procedures. Here, the authors develop an injectable shape-memory cardiac patch and demonstrated its applicability in a myocardial infarction model.
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