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Stimuli-responsive polymers and their applications in drug delivery

机译:刺激响应性聚合物及其在药物输送中的应用

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摘要

Interest in stimuli-responsive polymers is steadily gaining increasing momentum especially in the fields of controlled and self-regulated drug delivery. Delivery systems based on these polymers are developed to closely resemble the normal physiological process of the diseased state ensuring optimum drug release according to the physiological need. Also termed 'environmental-sensitive' or 'smart', these polymers experience rapid changes in their microstructure from a hydrophilic to a hydrophobic state triggered by small changes in the environment. The changes are reversible; therefore, the polymer is capable of returning to its initial state as soon as the trigger is removed. Stimuli may occur internally (e. g. a change in pH in certain organs or diseased states, a change in temperature or the presence of specific enzymes or antigens). External stimuli include magnetic or electric fields, light, ultrasound, etc. This review will delve into the various internally and externally stimuli-responsive polymers and the drug delivery systems that exploit them.
机译:对刺激响应性聚合物的兴趣正在稳步增长,特别是在药物控制和自我调节领域。开发了基于这些聚合物的递送系统,使其非常类似于患病状态的正常生理过程,从而确保根据生理需要实现最佳药物释放。这些聚合物也被称为“环境敏感”或“智能”的,其微结构经历了由环境的微小变化触发的从亲水状态到疏水状态的快速变化。更改是可逆的;因此,一旦移除扳机,聚合物便能够返回其初始状态。刺激可在内部发生(例如,某些器官或疾病状态的pH变化,温度变化或特定酶或抗原的存在)。外部刺激包括磁场或电场,光,超声等。本文将深入研究各种内部和外部刺激响应性聚合物以及利用它们的药物传递系统。

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