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Native-mimicking in vitro microenvironment: an elusive and seductive future for tumor modeling and tissue engineering

机译:模仿本地的体外微环境:肿瘤建模和组织工程的难以捉摸的诱人未来

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摘要

Human connective tissues are complex physiological microenvironments favorable for optimal survival, function, growth, proliferation, differentiation, migration, and death of tissue cells. Mimicking native tissue microenvironment using various three-dimensional (3D) tissue culture systems in vitro has been explored for decades, with great advances being achieved recently at material, design and application levels. These achievements are based on improved understandings about the functionalities of various tissue cells, the biocompatibility and biodegradability of scaffolding materials, the biologically functional factors within native tissues, and the pathophysiological conditions of native tissue microenvironments. Here we discuss these continuously evolving physical aspects of tissue microenvironment important for human disease modeling, with a focus on tumors, as well as for tissue repair and regeneration. The combined information about human tissue spaces reflects the necessities of considerations when configuring spatial microenvironments in vitro with native fidelity to culture cells and regenerate tissues that are beyond the formats of 2D and 3D cultures. It is important to associate tissue-specific cells with specific tissues and microenvironments therein for a better understanding of human biology and disease conditions and for the development of novel approaches to treat human diseases.
机译:人的结缔组织是复杂的生理微环境,有利于组织细胞的最佳存活,功能,生长,增殖,分化,迁移和死亡。数十年来,已经探索了使用各种三维(3D)组织培养系统模仿天然组织微环境的方法,最近在材料,设计和应用水平上取得了巨大进步。这些成就是基于对各种组织细胞的功能,支架材料的生物相容性和生物降解性,天然组织内的生物学功能因素以及天然组织微环境的病理生理状况的更好理解。在这里,我们讨论组织微环境的这些不断发展的物理方面,这些方面对于人类疾病建模非常重要,重点是肿瘤以及组织修复和再生。有关人体组织空间的综合信息反映了在体外以天然保真度配置空间微环境以培养细胞并再生2D和3D培养形式以外的组织时需要考虑的必要条件。重要的是将组织特异性细胞与其中的特定组织和微环境相关联,以更好地了解人类生物学和疾病状况,并开发出治疗人类疾病的新方法。

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