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Programmed Degradation of Hydrogels with a Double-Locked Domain

机译:用双锁域进行编程水凝胶的降解

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摘要

The ability to control the degradation of a material is critical to various applications. The purpose of this study was to demonstrate a concept of controlling degradation by using a double-locked domain (DLD). DLDs are molecular structures with two functional units that work cooperatively under environmental stimulation. One unit is triggered to transform without cleavage in the presence of the first stimulus, but this transformation enables the activation of the other unit for cleavage in the presence of the second stimulus. A DLD is presented that is activated to transform through intramolecular reconfiguration when exposed to light. After this transformation, the light-triggered DLD can undergo rapid cleavage under acid treatment. When this DLD is used as the cross-linkers of hydrogels, hydrogels undergo rapid degradation after sequential exposure to light irradiation and acid treatment. Reversing the order of light irradiation and acid treatment or only using individual stimulation does not lead to comparable degradation. Thus, this study has successfully demonstrated the great potential of using DLDs to achieve programmable degradation of materials.
机译:控制材料劣化的能力对各种应用至关重要。本研究的目的是通过使用双锁域(DLD)来证明通过使用双锁定域(DLD)来控制劣化的概念。 DLD是具有两种功能单元的分子结构,可在环境刺激下协同工作。在第一次刺激的情况下,触发一个单元以在不存在的情况下进行变换,但这种转化使得能够在第二刺激的存在下激活其他单元以切割。提出了DLD,其被激活以在暴露于光线时通过分子内重新配置来转换。在该转化后,光触发的DLD可以在酸处理下进行快速切割。当该DLD用作水凝胶的交联剂时,水凝胶在顺序暴露于光照射和酸处理后经历快速降解。逆转光照射和酸治疗的顺序或仅使用单独的刺激不会导致可比的降解。因此,本研究成功地证明了使用DLD实现可编程降解材料的巨大潜力。

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