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Nanocomposite thin films for triggerable drug delivery

机译:用于可引发的药物递送的纳米复合薄膜

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Introduction: Traditional drug release systems normally rely on a passive delivery of therapeutic compounds, which can be partially programmed, prior to injection or implantation, through variations in the material composition. With this strategy, the drug release kinetics cannot be remotely modified and thus adapted to changing therapeutic needs. To overcome this issue, drug delivery systems able to respond to external stimuli are highly desirable, as they allow a high level of temporal and spatial control over drug release kinetics, in an operator-dependent fashion. Areas covered: On-demand drug delivery systems actually represent a frontier in this field and are attracting an increasing interest at both research and industrial level. Stimuli-responsive thin films, enabled by nanofillers, hold a tremendous potential in the field of triggerable drug delivery systems. The inclusion of responsive elements in homogeneous or heterogeneous thin film-shaped polymeric matrices strengthens and/or adds intriguing properties to conventional (bare) materials in film shape. Expert opinion: This Expert Opinion review aims to discuss the approaches currently pursued to achieve an effective on-demand drug delivery, through nanocomposite thin films. Different triggering mechanisms allowing a fine control on drug delivery are described, together with current challenges and possible future applications in therapy and surgery.
机译:介绍:传统的药物释放系统通常依赖于治疗化合物的被动递送,其通过材料组合物的变化在注射或植入之前可以部分地编程。通过这种策略,无法远程修改药物释放动力学,因此适应改变治疗需求。为了克服这个问题,非常需要能够响应外部刺激的药物递送系统,因为它们以依赖于操作者的方式允许对药物释放动力学进行高水平的时间和空间控制。所涵盖的区域:按需药物递送系统实际上代表了该领域的边界,并在研究和工业水平上吸引了越来越兴趣的。由纳米填充物使能的刺激响应性薄膜在可引发的药物递送系统领域中保持巨大的潜力。在均匀或非均相薄膜形聚合物基质中包含响应性元素强化和/或向常规(裸)膜形状中的有趣性质增加。专家意见:该专家意见审查旨在通过纳米复合薄膜讨论目前追求有效的随需需求药物递送的方法。描述了允许对药物递送进行精细控制的不同触发机制,以及当前的挑战和治疗和手术中可能的未来应用。

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