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Stimuli-responsive liposome-nanoparticle assemblies.

机译:刺激响应脂质体-纳米颗粒组装体。

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INTRODUCTION: Nanoscale assemblies are needed that achieve multiple therapeutic objectives, including cellular targeting, imaging, diagnostics and drug delivery. These must exhibit high stability, bioavailability and biocompatibility, while maintaining or enhancing the inherent activity of the therapeutic cargo. Liposome-nanoparticle assemblies (LNAs) combine the demonstrated potential of liposome-based therapies, with functional nanoparticles. Specifically, LNAs can be used to concentrate and shield the nanoparticles and, in turn, stimuli-responsive nanoparticles that respond to external fields can be used to control liposomal release. The ability to design LNAs via nanoparticle encapsulation, decoration or bilayer-embedment offers a range of configurations with different structures and functions. AREAS COVERED: This paper reviews the current state of research and understanding of the design, characterization and performance of LNAs. A brief overview is provided on liposomes and nanoparticles for therapeutic applications, followed by a discussion of the opportunities and challenges associated with combining the two in a single assembly to achieve controlled release via light or radiofrequency stimuli. EXPERT OPINION: LNAs offer a unique opportunity to combine the therapeutic properties of liposomes and nanoparticles. Liposomes act to concentrate small nanoparticles and shield nanoparticles from the immune system, while the nanoparticle can be used to initiate and control drug release when exposed to external stimuli. These properties provide a platform to achieve nanoparticle-controlled liposomal release. LNA design and application are still in infancy. Research concentrating on the relationships among LNA structure, function and performance is essential for the future clinical use of LNAs.
机译:简介:需要实现多种治疗目的的纳米级组件,包括细胞靶向,成像,诊断和药物递送。这些必须表现出高稳定性,生物利用度和生物相容性,同时保持或增强治疗性货物的固有活性。脂质体-纳米颗粒组装体(LNA)将基于脂质体的疗法的潜力与功能性纳米颗粒相结合。具体而言,LNA可以用于浓缩和屏蔽纳米颗粒,进而,可以使用对外部电场有反应的刺激响应性纳米颗粒来控制脂质体的释放。通过纳米颗粒封装,装饰或双层嵌入设计LNA的能力提供了具有不同结构和功能的一系列配置。涵盖的领域:本文回顾了LNA设计,特性和性能的研究和了解的现状。简要概述了用于治疗应用的脂质体和纳米颗粒,然后讨论了将二者组合成一个组件以通过光或射频刺激实现控制释放所带来的机遇和挑战。专家意见:LNA提供了将脂质体和纳米颗粒的治疗特性相结合的独特机会。脂质体的作用是使小的纳米颗粒浓缩并屏蔽免疫系统中的纳米颗粒,而当暴露于外部刺激时,纳米颗粒可用于引发和控制药物释放。这些性质提供了实现纳米颗粒控制的脂质体释放的平台。 LNA的设计和应用仍处于起步阶段。专注于LNA结构,功能和性能之间关系的研究对于LNA的未来临床应用至关重要。

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