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首页> 外文期刊>Expert opinion on drug delivery >Extracellularly activatable nanocarriers for drug delivery to tumors
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Extracellularly activatable nanocarriers for drug delivery to tumors

机译:细胞外可激活的纳米载体,用于将药物递送至肿瘤

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Introduction: Nanoparticles (NPs) for drug delivery to tumors need to satisfy two seemingly conflicting requirements: they should maintain physical and chemical stability during circulation and be able to interact with target cells and release the drug at desired locations with no substantial delay. The unique microenvironment of tumors and externally applied stimuli provide a useful means to maintain a balance between the two requirements.Areas covered: We discuss nanoparticulate drug carriers that maintain stable structures in normal conditions but respond to stimuli for the spatiotemporal control of drug delivery. We first define the desired effects of extracellular activation of NPs and frequently used stimuli and then review the examples of extracellularly activated NPs.Expert opinion: Several challenges remain in developing extracellularly activatable NPs. First, some of the stimuli-responsive NPs undergo incremental changes in response to stimuli, losing circulation stability. Second, the applicability of stimuli in clinical settings is limited due to the occasional occurrence of the activating conditions in normal tissues. Third, the construction of stimuli-responsive NPs involves increasing complexity in NP structure and production methods. Future efforts are needed to identify new targeting conditions and increase the contrast between activated and nonactivated NPs while keeping the production methods simple and scalable.
机译:简介:用于将药物输送到肿瘤的纳米颗粒(NPs)需要满足两个看似相互矛盾的要求:它们在循环过程中应保持物理和化学稳定性,并能够与靶细胞相互作用并在不延迟的情况下在所需位置释放药物。肿瘤的独特微环境和外部施加的刺激为维持这两种要求之间的平衡提供了有用的手段。涵盖的领域:我们讨论了纳米颗粒药物载体,这些药物载体在正常条件下可保持稳定的结构,但对刺激有反应,可以时空控制药物的传递。我们首先定义NPs的细胞外激活和常用刺激的理想作用,然后回顾细胞外激活的NPs的实例。专家意见:在开发细胞外可激活的NPs方面仍然存在一些挑战。首先,一些对刺激有反应的NP会响应刺激而发生增量变化,从而失去循环稳定性。其次,由于正常组织中偶发的激活条件,刺激在临床环境中的适用性受到限制。第三,刺激反应性NP的构建涉及NP结构和生产方法的日益复杂。需要进一步的努力来确定新的靶向条件,并增加活化的和未活化的NP之间的对比度,同时保持生产方法简单和可扩展。

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