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The Importance of Cell-Cell Interaction Dynamics in Bottom-Up Tissue Engineering: Concepts of Colloidal Self-Assembly in the Fabrication of Multicellular Architectures

机译:细胞 - 细胞交互动态在自下而上组织工程中的重要性:胶体自组装在多细胞架构中的制造中的概念

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Building tissue from cells as the basic building block based on principles of self-assembly is a challenging and promising approach. Understanding how far principles of self-assembly and self-sorting known for colloidal particles apply to cells remains unanswered. In this study, we demonstrate that not just controlling the cell-cell interactions but also their dynamics is a crucial factor that determines the formed multicellular structure, using photoswitchable interactions between cells that are activated with blue light and reverse in the dark. Tuning dynamics of the cell-cell interactions by pulsed light activation results in multicellular architectures with different sizes and shapes. When the interactions between cells are dynamic, compact and round multicellular clusters under thermodynamic control form, while otherwise branched and loose aggregates under kinetic control assemble. These structures parallel what is known for colloidal assemblies under reaction- and diffusion-limited cluster aggregation, respectively. Similarly, dynamic interactions between cells are essential for cells to self-sort into distinct groups. Using four different cell types, which expressed two orthogonal cell-cell interaction pairs, the cells sorted into two separate assemblies. Bringing concepts of colloidal self-assembly to bottom-up tissue engineering provides a new theoretical framework and will help in the design of more predictable tissue-like structures.
机译:从细胞基础上的自组装原理的基本构建模块构建组织是一个充满挑战和希望的方法。如何理解远排序自著名的胶体粒子自组装和原则也适用于细胞仍然没有答案。在这项研究中,我们表明,不只是控制细胞 - 细胞相互作用,而且它们的动态是决定所形成的多细胞结构,采用了与蓝色光激活,并且在黑暗中反向单元之间的相互作用光可一个关键因素。通过在具有不同尺寸和形状的多细胞结构的脉冲光活化的结果细胞 - 细胞相互作用的动力学调谐。当细胞之间的相互作用是动态的,紧凑的和圆形下热力学控制形式多细胞簇,而动力学控制下以其他方式支链和松散聚集组装。这些结构平行什么分别已知为下反应 - 和扩散限制群聚集胶体组件。类似地,小区之间的动态相互作用是细胞自我排序成不同的组是必不可少的。使用四种不同的细胞类型,这表示两个正交细胞 - 细胞相互作用对,将细胞分选到两个单独的组件。使胶体自组装的概念,以自下而上的组织工程提供了新的理论框架,将在组织样结构更可预测的设计帮助。

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