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章鱼启发的刺激响应结构色水凝胶用于子宫颈管支架。

An Octopus-Inspired Stimulus-Responsive Structural Color Hydrogel for Uterus Cervical Canal Stent.

机构信息

Center for Future Optoelectronic Functional Materials, School of Computer and Electronic Information/School of Artificial Intelligence, Nanjing Normal University, Nanjing, 210023, China.

Department of Critical Care Medicine, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430022, China.

出版信息

Adv Healthc Mater. 2024 Sep;13(22):e2400439. doi: 10.1002/adhm.202400439. Epub 2024 Jun 19.

Abstract

Soft-bodied aquatic organisms have exhibited remarkable capabilities in navigating and moving within liquid environments serving as a profound inspiration for the development of bionic robots with intricate movements. Traditional rigid components are being replaced by stimulus-responsive soft materials such as hydrogels and shape memory polymers, leading to the creation of dynamically responsive soft robots. In this study, the development of a bionic robot inspired by the shape of an octopus and the adsorptive properties of its tentacles, specifically tailored for targeted stimulation and pH sensing in the cervix, are presented. This approach involves the design of a soft, water-based Janus adhesive hydrogel patch that adheres to specific parts of the cervix and responds to pH changes through external stimuli. The hydrogel patch incorporates inverse opal microstructures mimicking the legs of an octopus, to facilitate efficient and stable locomotion, unidirectional transport of biofluids, and pH-responsive behavior. This miniature bionic robot showcases controlled adhesion and precise unidirectional fluid transport highlighting its potential for targeted stimulus response and pH sensing in the uterine cervical tract. This breakthrough opens new avenues for medical applications within the expanding field of soft-bodied robotics.

摘要

软体水生生物在液体环境中导航和移动方面表现出了非凡的能力,这为具有复杂运动能力的仿生机器人的发展提供了深刻的启示。传统的刚性组件正被刺激响应型软材料(如水凝胶和形状记忆聚合物)所取代,从而产生了动态响应型软机器人。在这项研究中,我们受章鱼形状及其触手吸附特性的启发,设计了一种仿生机器人,专门用于宫颈的靶向刺激和 pH 感测。具体而言,我们设计了一种柔软的水基两性 Janus 粘附水凝胶贴片,它可以粘附在宫颈的特定部位,并通过外部刺激对 pH 值变化做出响应。该水凝胶贴片采用了模仿章鱼腿的逆蛋白石微结构,以促进高效稳定的运动、生物流体的单向传输以及 pH 响应行为。这种微型仿生机器人展示了受控的粘附和精确的单向流体传输,突出了其在子宫颈管内靶向刺激响应和 pH 感测方面的潜力。这一突破为软机器人领域的医学应用开辟了新的途径。

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