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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Stretchable, anti-bacterial hydrogel activated by large mechanical deformation
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Stretchable, anti-bacterial hydrogel activated by large mechanical deformation

机译:通过大机械变形激活可伸展,抗菌水凝胶

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Hydrogels have been used extensively to deliver functional molecular cargos in response to external mechanical force. However, the intrinsic brittleness of gels restricts the applicable range of strain to 0.1, thus limiting the range of molecular release rate that may be controlled. Also, uncontrollable molecular diffusion, which is especially prominent in small molecules, reduces the role of mechanical stimulus on the release rate. As such, we hypothesized that these challenges would be resolved by combining cyclodextrin, which may form guest-host complexes with small molecular cargos, with a stretchable hydrogel system. We examined this hypothesis by synthesizing cyclodextrin acrylate and incorporating it into a polyacrylamide gel that can be stretched by 100% of its original length. In the absence of external stretching, hydrogels containing cyclodextrin acrylate with a degree of acryloyl group substitution (DSA) of 2.3 presented a lower molecular release rate than hydrogels without cyclodextrin acrylate. More interestingly, the polyacrylamide-cyclodextrin hydrogel system displayed an increased molecular release rate corresponding to the degree of stretching, particularly in the gels containing cyclodextrin acrylate with a DSA of 2.3. As such, this stretchable gel loaded with quinine was used to inhibit the growth of E. coli in lysogeny broth only when the gel was stretched. We believe the results of this study would be valuable for improving the quality of controlled molecular delivery and subsequent efficacy of molecular cargos.
机译:水凝胶已被广泛用于响应外部机械力而递送功能分子尸体。然而,凝胶的内在脆性将适用的应变范围限制为0.1,因此限制了可以控制的分子释放速率的范围。此外,在小分子中特别突出的无法控制的分子扩散降低了机械刺激对释放速率的作用。因此,我们假设这些挑战将通过组合环糊精来解决,这些挑战可以形成具有小分子尸体的客体宿主复合物,具有可拉伸的水凝胶系统。我们通过合成环糊精丙烯酸酯并将其掺入聚丙烯酰胺凝胶中来检查该假设,该聚丙烯酰胺凝胶可以通过其原始长度的100%拉伸。在没有外拉伸的情况下,含有环糊精丙烯酸酯的水凝胶具有2.3的丙烯酰基取代(DSA)的丙烯酰基取代(DSA)的含量低于水凝胶的较低的分子释放率,而没有环糊精丙烯酸酯。更有趣的是,聚丙烯酰胺 - 环糊精水凝胶系统显示出对应于拉伸程度的分子释放速率,特别是在含有2.3的DSA的环糊精丙烯酸酯的凝胶中。这样,仅当凝胶拉伸时,使用奎宁加载奎宁的可拉伸凝胶抑制溶酶体肉汤中的大肠杆菌的生长。我们相信本研究的结果对于提高受控分子递送和随后的分子尸体疗效是有价值的。

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