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Updated: Aug 28, 2025

Author Spotlight: Photo Switchable Protein Recruitment for Reversible Patterning in Artificial Cellular Systems
Published on: February 23, 2024
Static and photoresponsive dynamic materials to dissect physical regulation of cellular functions
Jun Nakanishi1,2,3, Shota Yamamoto1,4
1Research Center for Functional Materials, National Institute for Materials Science, Japan. NAKANISHI.Jun@nims.go.jp.
Abstract:
Recent progress in mechanobiology has highlighted the importance of physical cues, such as mechanics, geometry (size), topography, and porosity, in the determination of cellular activities and fates, in addition to biochemical factors derived from their surroundings. In this review, we will first provide an overview of how such fundamental insights are identified by synchronizing the hierarchical nature of biological systems and static materials with tunable physical cues. Thereafter, we will explain the photoresponsive dynamic biomaterials to dissect the spatiotemporal aspects of the dependence of biological functions on physical cues.
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