用纳米纤维增强脱细胞细胞外基质水凝胶用于心脏组织工程

S. Mashayekhan, M. Jahanshahi, S. Moghadam
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引用次数: 4

摘要

心脏病在全球死亡人数增加中的作用以及用于移植的器官的有限可用性鼓励了多种策略来制造功能和可植入的结构。其中一个策略是开发一种生物相似的心脏组织支架,其中两种类型的纤维和水凝胶是常用的。为了实现这一目标,利用水凝胶特性和纤维具有优异机械性能的特性可以被认为是一种很有前途的方法。本研究的目的是开发一种由明胶、聚己内酯(PCL)、心脏细胞外基质(ECM)和壳聚糖组成的纤维/水凝胶复合材料。采用扫描电镜(SEM)、水滴接触角测试、红外光谱(FTIR)和力学性能测试对PCL和明胶纤维支架进行表征。结果表明,随着纺丝液中明胶含量的增加,纳米纤维的平均直径、亲水性和力学性能均有所提高。此外,力学试验结果表明,将明胶与PCL质量比为2的纤维与壳聚糖和ECM质量比为1的水凝胶相结合,可以获得与天然心脏组织力学性能相似的结构,可以作为心脏组织工程的合适支架。
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Reinforcement of a decellularized extracellular matrix-derived hydrogel using nanofibers for cardiac tissue engineering
The role of heart disease in increasing worldwide death and the limited availability of organs for transplantation have encouraged multiple strategies to fabricate functional and implantable constructs. One of these strategies is to develop a biologically similar heart tissue scaffold, in which two types of fiber and hydrogel are commonly used. Toward this goal, taking advantage of both hydrogels properties and fibers features with excellent mechanical properties can be considered as a promising method. The purpose of this study is to develop a fiber/hydrogel composite of gelatin, poly-caprolactone (PCL), cardiac extracellular matrix (ECM), and chitosan. The fibrous scaffolds of PCL and gelatin were characterized by SEM, water drop contact angle test, FTIR, and mechanical tests. The results showed that the average diameter of nanofibers, hydrophilicity and mechanical properties of the fibrous scaffolds increased with increasing the gelatin content in the spinning solution. Furthermore, the results of mechanical tests indicated that by integrating fibers with gelatin to PCL mass ratio of 2 in the hydrogel of chitosan and ECM with a mass ratio equal to 1, we obtained a construct with similar mechanical properties to native heart tissue, which may be proposed as an appropriate scaffold for heart tissue engineering.
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