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首页> 外文期刊>Cellular and Molecular Bioengineering >Fusing Tissue Engineering and Systems Biology Toward Fulfilling Their Promise
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Fusing Tissue Engineering and Systems Biology Toward Fulfilling Their Promise

机译:融合组织工程学和系统生物学,以兑现其承诺

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摘要

Tissue engineering has progressed to enable development of engineered 3D in vitro tissue models that can recapitulate in vivo cellular physiologies through the control of an expansive variety of microenvironmental design features, including mechanical, extracellular matrix, and soluble stimulatory cues. Microenviromental cues stimulate cells through a system of interconnected molecular regulatory pathways that govern cellular behaviors within engineered tissue models. Detailed understanding of how cell signaling pathways process these microenvironmental stimuli to govern their behaviors will require application of systems-level biological approaches. To date, the experimental and modeling approaches at the heart of systems biology have largely been examined in relatively simple experimental contexts that are readily and repeatedly addressable, such as mammalian cell lines in 2D culture. To enhance the prospects for systems biology to bring about insight into the complex cellular processes underlying human physiology and disease, and to identify and validate candidate therapeutic approaches, it needs to be advanced into improved experimental contexts that more effectively represent the complexity and functionality of native tissues. Herein, we discuss how systems biology can be adapted to the experimental constraints and interests of tissue engineering, and suggest how systems biology could aid in designing and investigating engineered tissue models for the study of human physiology and pathophysiology.
机译:组织工程学已取得进展,可以开发出可通过控制广泛的各种微环境设计特征(包括机械,细胞外基质和可溶性刺​​激线索)来概括体内细胞生理学的体外3D组织工程模型。微环境提示通过相互连接的分子调控通路系统来刺激细胞,这些分子调控通路控制着工程组织模型内的细胞行为。对细胞信号通路如何处理这些微环境刺激以控制其行为的详细理解将需要应用系统级生物学方法。迄今为止,已经在相对简单的实验环境中对系统生物学核心的实验和建模方法进行了广泛研究,这些实验环境易于重复地进行寻址,例如二维培养中的哺乳动物细胞系。为了增强系统生物学的前景,以深入了解人类生理学和疾病的基础复杂细胞过程,并确定和验证候选治疗方法,需要将其推进到改进的实验环境中,以更有效地代表天然的复杂性和功能性。组织。在此,我们讨论系统生物学如何适应组织工程的实验约束和兴趣,并提出系统生物学如何协助设计和研究工程组织模型以研究人体生理学和病理生理学。

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