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Tissue Engineering Approaches in the Design of Healthy and Pathological In Vitro Tissue Models

机译:健康和病理学体外组织模型设计中的组织工程方法

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In the tissue engineering (TE) paradigm, engineering and life sciences tools are combined to develop bioartificial substitutes for organs and tissues, which can in turn be applied in regenerative medicine, pharmaceutical, diagnostic, and basic research to elucidate fundamental aspects of cell functions in vivo or to identify mechanisms involved in aging processes and disease onset and progression. The complex three-dimensional (3D) microenvironment in which cells are organized in vivo allows the interaction between different cell types and between cells and the extracellular matrix (ECM), the composition of which varies as a function of the tissue, the degree of maturation and health conditions. In this context, 3D in vitro models can more realistically reproduce a tissue or organ than two-dimensional (2D) models. Moreover, they can overcome the limitations of animal models and reduce the need for in vivo tests, according to the "3Rs" guiding principles for a more ethical research. The design of 3D engineered tissue models is currently in its development stage, showing high potential in overcoming the limitations of already available models. However, many issues are still opened, concerning the identification of the optimal scaffold-forming materials, cell source and biofabrication technology, and the best cell culture conditions (biochemical and physical cues) to finely replicate the native tissue and the surrounding environment. In the near future, 3D tissue engineered models are expected to become useful tools in the preliminary testing and screening of drugs and therapies and in the investigation of the molecular mechanisms underpinning disease onset and progression. In this review, the application of TE principles to the design of in vitro 3D models will be surveyed, with a focus on the strengths and weaknesses of this emerging approach. In addition, a brief overview on the development of in vitro models of healthy and pathological bone, heart, pancreas and liver will be presented.
机译:在组织工程学(TE)范式中,工程学和生命科学工具相结合,开发出器官和组织的生物人工替代物,这些替代物又可以用于再生医学,药物,诊断和基础研究,以阐明细胞功能的基本方面。体内或识别参与衰老过程以及疾病发作和进展的机制。细胞在体内组织的复杂三维(3D)微环境允许不同细胞类型之间以及细胞与细胞外基质(ECM)之间的相互作用,其组成随组织,成熟程度的变化而变化和健康状况。在这种情况下,与二维(2D)模型相比,体外3D模型可以更真实地复制组织或器官。此外,根据“ 3R”指导原则进行更符合伦理学的研究,它们可以克服动物模型的局限性并减少对体内测试的需求。 3D工程组织模型的设计目前处于开发阶段,在克服现有模型的局限性方面显示出巨大潜力。但是,仍然存在许多问题,涉及确定最佳支架形成材料,细胞来源和生物制造技术以及最佳复制精细组织天然组织和周围环境的最佳细胞培养条件(生化和物理线索)。在不久的将来,预计3D组织工程模型将成为有用的工具,用于药物和疗法的初步测试和筛选以及基础疾病发病和进展的分子机制研究。在这篇综述中,将对TE原理在体外3D模型设计中的应用进行调查,重点是这种新兴方法的优点和缺点。此外,将简要介绍健康和病理性骨骼,心脏,胰腺和肝脏体外模型的开发。

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