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Biointerfacing polymeric microcapsules for in vivo near-infrared light-triggered drug release

机译:Biointerfacing聚合物微胶囊的体内近红外光触发药物释放

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摘要

Seeking safe and effective water-soluble drug carriers is of great significance in nanomedicine. To achieve this goal, we present a novel drug delivery system based on biointerfacing hollow polymeric microcapsules for effectively encapsulating water-soluble antitumor drug and gold nanorod (GNR) functionalization for triggered release of therapeutic drugs on-demand using low power near-infrared (NIR) radiation. The surface of polymeric microcapsules is covered with fluidic lipid bilayers to decrease the permeability of the wall of polymeric capsules. The temperature increase upon NIR illumination deconstructs the structure of the lipid membrane and polyelectrolyte multilayers, which in turn results in the rapid release of encapsulated water-soluble drug. In vivo antitumor tests demonstrate that this microcapsule has the effective ability of inhibiting tumor growth and preventing metastases. Real time in vivo fluorescence imaging results confirm that capsules can be excreted gradually from the animal body which in turn demonstrates the biocompatibility and biodegradation of these biointerfacing GNR-microcapsules. This intelligent system provides a novel anticancer platform with the advantages of controlled release, biological friendliness and credible biosafety.
机译:寻找安全有效的水溶性药物航空公司具有十分重要的意义纳米。基于新型药物输送系统biointerfacing空心聚合物微胶囊有效的封装水溶性抗肿瘤药物和金奈米棒(GNR)功能化引发了按需治疗药物的释放使用低功率近红外(NIR)辐射。聚合物微胶囊的表面覆盖射流脂质影响降低渗透性聚合物胶囊的墙。温度增加近红外照明解构的结构脂质膜聚电解质多层膜,反过来导致的快速释放封装水溶性药物。证明该微胶囊有效的抑制肿瘤的生长和能力防止转移。荧光成像结果确认胶囊可以分泌逐渐从动物的身体反过来了生物相容性和生物降解biointerfacing GNR-microcapsules。智能系统提供了一种新的抗癌平台控制的优点释放、生物友好和可信的生物安全。

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