自愈水凝胶
材料科学
药物输送
双层
纳米技术
控制释放
执行机构
弹性体
胶囊
药品
生物物理学
生物医学工程
复合材料
化学
膜
高分子化学
计算机科学
药理学
生物化学
人工智能
生物
医学
植物
作者
Zilong Han,Wei Wang,Guoyong Mao,Tenghao Yin,Danming Zhong,Burebi Yiming,Xiaocheng Hu,Zheng Jia,Guodong Nian,Shaoxing Qu,Wei Yang
标识
DOI:10.1021/acsami.9b21713
摘要
As one of the most promising drug delivery carriers, hydrogels have received considerable attention in recent years. Many previous efforts have focused on diffusion-controlled release, which allows hydrogels to load and release drugs in vitro and/or in vivo. However, it hardly applies to lipophilic drug delivery due to their poor compatibility with hydrogels. Herein, we propose a novel method for lipophilic drug release based on a dual pH-responsive hydrogel actuator. Specifically, the drug is encapsulated and can be released by a dual pH-controlled capsule switch. Inspired by the deformation mechanism of Drosera leaves, we fabricate the capsule switch with a double-layer structure that is made of two kinds of pH-responsive hydrogels. Two layers are covalently bonded together through silane coupling agents. They can bend collaboratively in a basic or acidic environment to achieve the "turn on" motion of the capsule switch. By incorporating an array of parallel elastomer stripes on one side of the hydrogel bilayer, various motions (e.g., bending, twisting, and rolling) of the hydrogel bilayer actuator were achieved. We conducted an in vitro lipophilic drug release test. The feasibility of this new drug release method is verified. We believe this dual pH-responsive actuator-controlled drug release method may shed light on the possibilities of various drug delivery systems.
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