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Bioinspirations: Cell-Inspired Small-Scale Systems for Enabling Studies in Experimental Biomechanics

机译:生物灵感:用于实验生物力学研究的细胞启发式小型系统

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Biomechanical forces govern the behaviors of organisms and their environment and examining these behaviors to understand the underlying phenomena is an important challenge. One experimental approach for probing these interactions between organisms and their biomechanical environment uses biologically-inspired, artificial surrogates that reproduce organic mechanical systems. For the case of complex, multicellular organisms, robot surrogates have been particularly effective, such as in the analysis of the fins of fish and insects' wings. This biologically-inspired approach is also exciting when examining cell-scale responses as multicellular organisms' behavior is directly influenced by the integrated interactions of smaller-scale components (i.e., cells). In this review, we introduce the burgeoning field of engineering of artificial cells, which focuses on developing cell-scale entities replicating cellular behaviors. We describe both a bottom-up approach to constructing artificial cells, using molecular components to directly assemble artificial cells, as well as a top-down approach, in which living cells are encapsulated in a single entity whose behavior is determined by its constituent members. In particular, we discuss the potential role of these artificial cells as implantable controllers, designed to alter the mechanical behavior of a host organism. Eventually, artificial cells designed to function as small-scale controllers may help alter organisms' phenotypes.
机译:生物力学力控制着生物及其环境的行为,检查这些行为以了解潜在现象是一个重要的挑战。一种探测生物与其生物力学环境之间相互作用的实验方法是使用受生物启发的人工替代物,该替代物可复制有机机械系统。对于复杂的多细胞生物,机器人替代品特别有效,例如在分析鱼和昆虫的翅膀时。当检查细胞规模的反应时,这种受生物启发的方法也是令人兴奋的,因为多细胞生物的行为直接受到较小规模成分(即细胞)的整合相互作用的影响。在这篇综述中,我们介绍了人工细胞工程的新兴领域,其重点是发展复制细胞行为的细胞规模实体。我们描述了一种使用分子成分直接组装人工细胞的自下而上的构建人工细胞的方法,以及一种将生物细胞封装在一个由其组成成员决定其行为的单个实体中的自上而下的方法。特别是,我们讨论了这些人造细胞作为可植入控制器的潜在作用,旨在改变宿主生物的机械行为。最终,被设计为小规模控制者的人造细胞可能有助于改变生物体的表型。

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