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◆ Science2026-04-16· Liquid crystal

Guidance of cellular nematic elastomers into shape-programmable living surfaces

Pau Guillamat, Waleed Mirza, Pradeep K. Bal, Manuel Gómez‐González, Pere Roca‐Cusachs, Marino Arroyo, Xavier Trepat

原始摘要(英文原文)· Original abstract
Engineering living materials that autonomously morph into predetermined shapes holds potential for synthetic morphogenesis and soft robotics. Harnessing cellular tissues to self-organize and generate forces offers a promising route toward this goal. However, controlling tissue mechanics to direct morphogenesis remains challenging. We introduce a strategy to program tissue-shape transformations through nematic organization of cellular forces. By controlling nematic order and topological defects, we generate tissues programmed with specific stress fields. Using a theoretical framework coupling contractile nematics with thin-sheet mechanics, we show that nematically guided active stresses can drive morphogenesis through Gaussian morphing. Experimentally, detachment of nematic tissues triggers out-of-plane deformations, generating reproducible three-dimensional shapes. Integrating contractility and nematic patterning, our approach establishes a framework for designing shape-programmable living surfaces.
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Guidance of cellular nematic elastomers into shape-programmable living surfaces — 科研速览 Science Skim