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一种通过自折叠刺激活细胞簇的活性软质水凝胶致动器。

An Active and Soft Hydrogel Actuator to Stimulate Live Cell Clusters by Self-folding.

作者信息

Lim Jun Woo, Kim Hee-Jin, Kim Yechan, Shin Sung Gyu, Cho Sungwoo, Jung Woong Gyu, Jeong Jae Hyun

机构信息

Department of Chemical Engineering, Soongsil University, Seoul 06978, Korea.

School of Chemical and Biological Engineering, Seoul National University, Seoul 08826, Korea.

出版信息

Polymers (Basel). 2020 Mar 5;12(3):583. doi: 10.3390/polym12030583.

Abstract

The hydrogels are widely used in various applications, and their successful uses depend on controlling the mechanical properties. In this study, we present an advanced strategy to develop hydrogel actuator designed to stimulate live cell clusters by self-folding. The hydrogel actuator consisting of two layers with different expansion ratios were fabricated to have various curvatures in self-folding. The expansion ratio of the hydrogel tuned with the molecular weight and concentration of gel-forming polymers, and temperature-sensitive molecules in a controlled manner. As a result, the hydrogel actuator could stimulate live cell clusters by compression and tension repeatedly, in response to temperature. The cell clusters were compressed in the 0.7-fold decreases of the radius of curvature with 1.0 mm in room temperature, as compared to that of 1.4 mm in 37 °C. Interestingly, the vascular endothelial growth factor (VEGF) and insulin-like growth factor-binding protein-2 (IGFBP-2) in MCF-7 tumor cells exposed by mechanical stimulation was expressed more than in those without stimulation. Overall, this new strategy to prepare the active and soft hydrogel actuator would be actively used in tissue engineering, drug delivery, and micro-scale actuators.

摘要

水凝胶被广泛应用于各种领域,其成功应用取决于对机械性能的控制。在本研究中,我们提出了一种先进的策略来开发水凝胶致动器,该致动器旨在通过自折叠来刺激活细胞簇。制备了由具有不同膨胀率的两层组成的水凝胶致动器,使其在自折叠时具有各种曲率。水凝胶的膨胀率通过凝胶形成聚合物的分子量和浓度以及温度敏感分子以可控方式进行调节。结果,水凝胶致动器可以响应温度反复通过压缩和拉伸来刺激活细胞簇。与37°C时1.4mm的曲率半径相比,在室温下曲率半径减小0.7倍时,细胞簇会被压缩。有趣的是,受到机械刺激的MCF-7肿瘤细胞中血管内皮生长因子(VEGF)和胰岛素样生长因子结合蛋白-2(IGFBP-2)的表达比未受刺激的细胞更多。总体而言,这种制备活性和柔软水凝胶致动器的新策略将在组织工程、药物递送和微尺度致动器中得到积极应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/70a1/7182895/661a2cacd8b1/polymers-12-00583-g001.jpg

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