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Myocardial tissue engineering: the extracellular matrix.

机译:心肌组织工程:细胞外基质。

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More than a decade after the first reports on successful three-dimensional cardiac cell culture for experimental and potential therapeutic application, the interest and experimental efforts in the field of myocardial tissue engineering continues to grow. The hope that tissue cultures may one day act as graft substitute for malfunctioning myocardium continues to drive current scientific activity. Against this background interest seem to have progressively shifted towards the aim of engineering single tissue components. Accordingly, elements of the extracellular matrix (ECM) have gained increasing attention as potentially crucial mediators in developing and maintaining the characteristics of three-dimensional cardiac cell cultures. The ECM is now no longer regarded as merely a scaffold for developing tissue, a concept that is widely acknowledged in modern tissue engineering. The understanding of the role of precursor and stem cells has highlighted new complicated aspects of cell proliferation and differentiation and ECM proves to play an important role in providing essential signals to influence major intracellular pathways such as proliferation, differentiation and cell metabolism. Furthermore, progress in biochemical engineering has provided the perspective of application of synthetic ECM-linked molecules with bioactive potential. With the advent and continuous refinement of cell removal techniques, a new class of native acellular ECM has emerged with some striking advantages. The presently available ECM materials aim to closely resemble the in vivo microenvironment by acting as an active component of the developing tissue construct. It is therefore not surprising that most of the focus in myocardial tissue engineering has been on cell-matrix interaction, for both naturally derived and synthetic ECM. This article provides a review of established models of myocardial tissue engineering with respect to the employed ECM materials including current frontiers in material development.
机译:在成功报道了用于实验和潜在治疗应用的成功的三维心脏细胞培养的第一个报告之后的十多年中,对心肌组织工程领域的兴趣和实验工作继续增长。组织培养物有一天可以代替心肌功能不全的移植物的希望继续推动着当前的科学活动。在这种背景下,人们的兴趣似乎已逐渐转向设计单个组织组件的目的。因此,细胞外基质(ECM)的元素作为发展和维持三维心脏细胞培养物的特性中潜在的关键介质而受到越来越多的关注。现在,ECM不再仅仅是用于组织发展的支架,这一概念已在现代组织工程学中得到广泛认可。对前体细胞和干细胞作用的理解突显了细胞增殖和分化的新的复杂方面,并且ECM被证明在提供影响主要细胞内途径(例如增殖,分化和细胞代谢)的基本信号中起着重要作用。此外,生物化学工程学的进步为具有生物活性潜力的合成ECM连接分子的应用提供了前景。随着细胞去除技术的出现和不断完善,一类新型的天然无细胞ECM出现了,并具有一些惊人的优势。当前可用的ECM材料旨在通过充当发育中的组织构建体的活性成分来紧密地类似于体内微环境。因此,毫不奇怪,对于天然来源的和合成的ECM,心肌组织工程中的大多数焦点都集中在细胞-基质相互作用上。本文提供了关于已采用的ECM材料(包括材料开发中的最新领域)的心肌组织工程模型的综述。

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