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Superparamagnetic lipid-based hybrid nanosystems for drug delivery

机译:基于超顺磁性脂质的药物杂交纳米系统

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Introduction: The development of multifunctional drug carriers provides many opportunities in the field of drug delivery. Among them, carriers loaded with both drug and superparamagnetic iron oxide nanoparticles would allow the combination of chemotherapy with the possibility of monitoring or controlling the distribution of the nanocarrier in the body, triggering drug release and/or applying a synergistic hyperthermia treatment. Areas covered: The present review covers biocompatible lipid-based nanotechnologies that have been employed to co-encapsulate drug and iron oxide. Depending on their physico-chemical properties, lipids are able to generate monophasic lipophilic nanodispersions or more complex structures containing both lipidic and aqueous domains. This review describes the rationale behind these nanoobjects and how they can be prepared. Expert opinion: This review focuses on the co-encapsulation aspects of these hybrid systems and discusses in particular the possible heterogeneities in drug-to-iron oxide ratio and the difficulties that could be encountered in the construction of these biocompatible multifunctional drug carriers.
机译:简介:多功能药物运营商的发展在药物递送领域提供了许多机会。其中,用药物和超顺磁性氧化铁纳米颗粒装载的载体将使化疗的组合具有监测或控制体内纳米载体的分布,引发药物释放和/或应用协同热疗治疗的可能性。所涵盖的地区:本综述涵盖了已经用于共用药物和氧化铁的生物相容性脂质基纳米技术。根据其物理化学性质,脂质能够产生含有脂质和含水结构域的单相脂质纳米分散体或更复杂的结构。这篇评论描述了这些纳米反映背后的理由以及如何准备它们。专家意见:本综述侧重于这些混合系统的共同封装方面,特别地讨论了药物 - 氧化铁比中的可能的异质性以及在这些生物相容性多功能药物载体的构建中可能遇到的困难。

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