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首页> 外文期刊>Angewandte Chemie >Stretch-Induced Drug Delivery from Superhydrophobic Polymer Composites: Use of Crack Propagation Failure Modes for Controlling Release Rates
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Stretch-Induced Drug Delivery from Superhydrophobic Polymer Composites: Use of Crack Propagation Failure Modes for Controlling Release Rates

机译:超疏水聚合物复合材料的拉伸诱导药物递送:使用裂纹扩展破坏模式控制释放速率

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摘要

The concept of using crack propagation in polymeric materials to control drug release and its first demonstration are reported. The composite drug delivery system consists of highly-textured superhydrophobic electrosprayed microparticle coatings, composed of biodegradable and bio-compatible polymers poly(caprolactone) and poly(glycerol monostearate carbonate-co-caprolactone), and a cellulose/polyester core. The release of entrapped agents is controlled by the magnitude of applied strain, resulting in a graded response from water infiltration through the propagating patterned cracks in the coating. Strain-dependent delivery of the anticancer agents cisplatin and 7-ethyl-10-hydroxycamptothecin to esophageal cancer cells (OE33) in vitro is observed. Finally the device is integrated with an esophageal stent to demonstrate delivery of fluorescein diacetate, using applied tension, to an ex vivo esophagus.
机译:报告了在聚合物材料中使用裂纹扩展来控制药物释放的概念及其首次演示。该复合药物输送系统由高度结构化的超疏水电喷涂微粒涂层组成,该涂层由可生物降解和生物相容的聚合物聚己内酯和聚单硬脂酸碳酸甘油酯-共己内酯丙三醇和纤维素/聚酯芯组成。夹带剂的释放受所施加应变的大小控制,从而导致水通过涂层中传播的图案化裂纹的浸润而产生分级响应。观察到抗癌药顺铂和7-乙基-10-羟基喜树碱在体外向食管癌细胞(OE33)的应变依赖性传递。最终,该装置与食道支架整合在一起,以证明使用施加的张力将荧光素二乙酸酯递送至离体食道。

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