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Smart Nanoscale Drug Delivery Platforms from Stimuli-Responsive Polymers and Liposomes

机译:来自刺激反应性聚合物和脂质体的智能纳米级药物递送平台

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摘要

Since the 1960’s, stimuli-responsive polymers have been utilized as functional soft materials for biological applications such as the triggered-release delivery of biologically active cargos. Over the same period, liposomes have been explored as an alternative drug delivery system with potentials to decrease the toxic side effects often associated with conventional small-molecule drugs. However, the lack of drug-release triggers and the instability of bare liposomes often limit their practical applications, causing short circulation time and low therapeutic efficacy. This perspective article highlights recent work in integrating these two materials together to achieve a targetable, triggerable nanoscale platform that fulfills all the characteristics of a near-ideal drug delivery system. Through a drop-in, post-synthesis modification strategy, a network of stimuli-responsive polymers can be integrated onto the surface of liposomes to form polymer-caged nanobins, a multifunctional nanoscale delivery platform that allows for multi-drug loading, targeted delivery, triggered drug-release, and theranostic capabilities.
机译:自1960年代以来,刺激响应聚合物已被用作功能性软材料,用于生物应用,例如生物活性货物的触发释放递送。在同一时期,已经研究了脂质体作为替代的药物递送系统,其具有降低通常与常规小分子药物相关的毒性副作用的潜力。然而,缺乏药物释放触发剂和裸露的脂质体的不稳定性常常限制了它们的实际应用,导致循环时间短和治疗功效低。该观点文章重点介绍了将这两种材料整合在一起以实现可靶向,可触发的纳米级平台的最新工作,该平台满足了近乎理想的药物输送系统的所有特征。通过直接合成后的修饰策略,可以将刺激反应性聚合物网络整合到脂质体的表面上,形成聚合物笼状的纳米盒,这是一种多功能的纳米级递送平台,可实现多药加载,靶向递送,触发了药物释放和治疗诊断能力。

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