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Nanopharmaceuticals II: application of nanoparticles and nanocarrier systems in pharmaceutics and nanomedicine

机译:纳米药物II:纳米颗粒和纳米载体系统在药物和纳米药物中的应用

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摘要

The principle aim of using nanoparticles in pharmaceutical delivery systems is to enable targeted and efficient delivery of the appropriate levels of therapeutic or diagnostic agents to the target sites with reduced, if any, side effects to the patient. Given the benefits that nanotechnology offers, much effort has focused on producing nanoparticles for the delivery of drugs (particularly anti-tumour drugs), photosensitisers, diagnostic agents and vaccines. These nanosystems can be modified to achieve desirable biological properties (e.g., long circulation in blood, targeting delivery, stimuli sensitivity and intracellular target) and perform various therapeutically or diagnostically important functions simultaneously. This paper reviews the application of nanoparticulate systems in vaccination, chemotherapy, photodynamic therapy, diagnostics, and drug/gene delivery. Multifunctional nanocarriers are also described. Additionally, nanopharmaceutical product development and related issues are briefly presented.
机译:在药物输送系统中使用纳米颗粒的主要目的是能够将适当水平的治疗剂或诊断剂靶向并有效地输送至目标部位,同时减少对患者的副作用(如果有的话)。鉴于纳米技术所带来的好处,很多努力都集中在生产用于输送药物(特别是抗肿瘤药物),光敏剂,诊断剂和疫苗的纳米颗粒上。可以修饰这些纳米系统以实现所需的生物学特性(例如,血液中的长循环,靶向递送,刺激敏感性和细胞内靶标),并同时执行各种治疗或诊断上重要的功能。本文概述了纳米颗粒系统在疫苗接种,化学疗法,光动力疗法,诊断和药物/基因传递中的应用。还描述了多功能纳米载体。此外,简要介绍了纳米药物产品的开发和相关问题。

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