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Elastic silk-cardiac extracellular matrix hydrogels exhibit time-dependent stiffening that modulates cardiac fibroblast response

机译:弹性丝心细胞外基质水凝胶表现出随时间变化的变硬可调节心脏成纤维细胞的反应

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摘要

Heart failure is the leading cause of death in the United States and rapidly becoming the leading cause of death worldwide. While pharmacological treatments can reduce progression to heart failure following myocardial infarction, there still exists a need for new therapies that promote better healing post injury for a more functional cardiac repair and methods to understand how the changes to tissue mechanical properties influence cell phenotype and function following injury. To address this need, we have optimized a silk-based hydrogel platform containing cardiac tissue-derived extracellular matrix (cECM). These silk-cECM hydrogels have tunable mechanical properties, as well as rate-controllable hydrogel stiffening over time. In vitro, silk-cECM scaffolds led to enhanced cardiac fibroblast (CF) cell growth and viability with culture time. cECM incorporation improved expression of integrin an focal adhesion proteins, suggesting that CFs were able to interact with the cECM in the hydrogel. Subcutaneous injection of silk hydrogels in rats demonstrated that addition of the cECM led to endogenous cell infiltration and promoted endothelial cell ingrowth after 4 weeks in vivo. This naturally derived silk fibroin platform is applicable to the development of more physiologically relevant constructs that replicate healthy and diseased tissue in vitro and has the potential to be used as an injectable therapeutic for cardiac repair.
机译:心力衰竭是美国的主要死亡原因,并迅速成为全世界的主要死亡原因。尽管药理学治疗可以减少心肌梗塞后心力衰竭的进展,但仍需要新的疗法以促进损伤后的更好愈合,以实现功能更强的心脏修复,以及了解组织机械特性变化如何影响细胞表型和功能的方法受伤。为了满足这一需求,我们优化了基于丝绸的水凝胶平台,其中包含心脏组织衍生的细胞外基质(cECM)。这些silk-cECM水凝胶具有可调的机械性能,以及随时间变化的速率可控的水凝胶硬化。在体外,silk-cECM支架可增强心脏成纤维细胞(CF)的细胞生长能力,并能延长培养时间。 cECM掺入改善了整联蛋白a黏着斑蛋白的表达,表明CFs能够与水凝胶中的cECM相互作用。在大鼠中皮下注射丝水凝胶表明,加入cECM会在体内4周后导致内源性细胞浸润并促进内皮细胞向内生长。这种天然来源的丝素蛋白平台可用于开发更多生理相关的构建体,这些构建体可在体外复制健康和患病的组织,并有潜力用作心脏修复的可注射治疗剂。

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