The effect of bioengineered acellular collagen patch on cardiac remodeling and ventricular function post myocardial infarction

被引:158
|
作者
Serpooshan, Vahid [1 ]
Zhao, Mingming [1 ]
Metzler, Scott A. [1 ]
Wei, Ke [2 ]
Shah, Parisha B. [1 ]
Wang, Andrew [1 ]
Mahmoudi, Morteza [1 ]
Malkovskiy, Andrey V. [3 ]
Rajadas, Jayakumar [3 ]
Butte, Manish J. [1 ]
Bernstein, Daniel [1 ]
Ruiz-Lozano, Pilar [1 ,2 ]
机构
[1] Stanford Univ, Dept Pediat, Stanford, CA 94305 USA
[2] Sanford Burnham Med Res Inst, La Jolla, CA 92037 USA
[3] Stanford Univ, Biomat & Adv Drug Delivery Lab, Stanford, CA 94305 USA
关键词
Cardiac tissue engineering; Scaffold; Collagen; Heart; Cardiomyocyte; Angiogenesis; MULTIPLE UNCONFINED COMPRESSION; MESENCHYMAL STEM-CELLS; HYDRAULIC PERMEABILITY; MATRIX; MUSCLE; SCAFFOLDS; DIFFERENTIATION; REGENERATION; THERAPY;
D O I
10.1016/j.biomaterials.2013.08.017
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Regeneration of the damaged myocardium is one of the most challenging fronts in the field of tissue engineering due to the limited capacity of adult heart tissue to heal and to the mechanical and structural constraints of the cardiac tissue. In this study we demonstrate that an engineered acellular scaffold comprising type I collagen, endowed with specific physiomechanical properties, improves cardiac function when used as a cardiac patch following myocardial infarction. Patches were grafted onto the infarcted myocardium in adult murine hearts immediately after ligation of left anterior descending artery and the physiological outcomes were monitored by echocardiography, and by hemodynamic and histological analyses four weeks post infarction. In comparison to infarcted hearts with no treatment, hearts bearing patches preserved contractility and significantly protected the cardiac tissue from injury at the anatomical and functional levels. This improvement was accompanied by attenuated left ventricular remodeling, diminished fibrosis, and formation of a network of interconnected blood vessels within the infarct. Histological and immunostaining confirmed integration of the patch with native cardiac cells including fibroblasts, smooth muscle cells, epicardial cells, and immature cardiomyocytes. In summary, an acellular biomaterial with specific biomechanical properties promotes the endogenous capacity of the infarcted myocardium to attenuate remodeling and improve heart function following myocardial infarction. (C) 2013 Elsevier Ltd. All rights reserved.
引用
收藏
页码:9048 / 9055
页数:8
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