3D integration of pH-cleavable drug-hydrogel conjugates on magnetically driven smart microtransporters

自愈水凝胶 药物输送 纳米技术 材料科学 背景(考古学) 控制释放 涂层 生物医学工程 表面改性 靶向给药 制作 化学工程 工程类 病理 替代医学 高分子化学 古生物学 生物 医学
作者
Roberto Bernasconi,Emanuele Mauri,Arianna Rossetti,Stefano Rimondo,Raffaella Suriano,Marinella Levi,Alessandro Sacchetti,Salvador Pané,Luca Magagnin,Filippo Rossi
出处
期刊:Materials & Design [Elsevier]
卷期号:197: 109212-109212 被引量:19
标识
DOI:10.1016/j.matdes.2020.109212
摘要

Targeted drug delivery is currently emerging as a promising approach to overcome the limits of currently employed administration techniques. The most convenient methodology to control drug delivery is the application of stimuli-responsive materials, which can release drugs only when required, to remotely controlled microdevices able to navigate human body. Thanks to this synergy, release can be controlled both spatially and temporally. Spatial control is guaranteed by the maneuverability of the devices, which can be precisely guided to release in targeted locations. Temporal control, conversely, is guaranteed by the functionalization introduced in the stimuli-responsive material. In this context, the present work describes the coating of magnetically controlled microdevices with functionalized alginate-based hydrogels able to release drugs at pH values lower than 4.5. Hydrogels are functionalized binding the drug with either an azidoethyl ester bond or an amidic bond, following an innovative synthesis route. After fabrication, release from hydrogel coated microdevices as a function of the environmental pH is characterized. Finally, devices are magnetically actuated and the possibility to achieve spatially and temporally controlled release is demonstrated. The functional microtransporters described in the present work are particularly promising for in-vivo applications in environments where pH differences are present, like the digestive apparatus.
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