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Dynamically Tunable Cell Culture Platforms for Tissue Engineering and Mechanobiology

机译:用于组织工程和力学生物学的可动态调整的细胞培养平台

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摘要

Human tissues are sophisticated ensembles of many distinct cell types embedded in the complex, but well-defined, structures of the extracellular matrix (ECM). Dynamic biochemical, physicochemical, and mechano-structural changes in the ECM define and regulate tissue-specific cell behaviors. To recapitulate this complex environment in vitro, dynamic polymer-based biomaterials have emerged as powerful tools to probe and direct active changes in cell function. The rapid evolution of polymerization chemistries, structural modulation, and processing technologies, as well as the incorporation of stimuli-responsiveness, now permit synthetic microenvironments to capture much of the dynamic complexity of native tissue. These platforms are comprised not only of natural polymers chemically and molecularly similar to ECM, but those fully synthetic in origin. Here, we review recent in vitro efforts to mimic the dynamic microenvironment comprising native tissue ECM from the viewpoint of material design. We also discuss how these dynamic polymer-based biomaterials are being used in fundamental cell mechanobiology studies, as well as towards efforts in tissue engineering and regenerative medicine.
机译:人体组织是复杂的,定义明确的细胞外基质(ECM)结构中嵌入的许多不同细胞类型的复杂集合体。 ECM中的动态生化,物理化学和机械结构变化定义并调节组织特异性细胞行为。为了在体外概括这种复杂的环境,基于动态聚合物的生物材料已经成为探测和指导细胞功能的主动变化的强大工具。聚合化学,结构调节和加工技术的迅速发展,以及对刺激响应能力的融合,现在使合成的微环境能够捕获天然组织的许多动态复杂性。这些平台不仅由与ECM在化学和分子上相似的天然聚合物组成,而且由完全合成的那些组成。在这里,我们从材料设计的角度回顾了最近的体外尝试,以模仿包含天然组织ECM的动态微环境。我们还将讨论这些动态的基于聚合物的生物材料如何用于基础细胞力学生物学研究,以及在组织工程和再生医学方面的努力。

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