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Reverse micelle-loaded lipid nanocarriers: A novel drug delivery system for the sustained release of doxorubicin hydrochloride

机译:反胶束负载脂质纳米载体:盐酸阿霉素持续释放的新型药物传递系统

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摘要

In this study, we are pioneering new nanotechnology for the encapsulation of anticancer drugs (doxorubicin (DOX) and/or docetaxel (DOCE)), whatever their solubility and water affinity. The purpose of this study is to highlight the potential of this recently patented technology, by carrying out a thorough physicochemical characterisation of these multiscaled nanocarriers, followed by the study of an encapsulation and release model of hydrophilic anticancer drug. The formulation process is based on a low-energy nano-emulsification method and allows the generation of a structure composed of oil-based nanocarriers loaded with reverse micelles. Thanks to this, hydrophilic contents can be solubilised in the oily core of this kind of nano-emulsion along with lipophilic content. The results emphasise some original structure particularities due to the multistep formulation process, and the diffusion-based behaviour revealed for the DOX release profile that is shown to be intimately linked to the morphology of the particles.
机译:在这项研究中,无论其溶解度和与水的亲和力如何,我们都在开创用于封装抗癌药物(阿霉素(DOX)和/或多西他赛(DOCE))的新纳米技术。这项研究的目的是通过对这些多尺度纳米载体进行全面的理化表征,然后研究亲水性抗癌药物的包封和释放模型,来突出这项最新专利技术的潜力。配制过程基于低能量的纳米乳化方法,可生成由负载有反胶束的油基纳米载体组成的结构。因此,亲水性内容物可以与亲脂性内容物一起溶解在这种纳米乳液的油性核中。结果强调了由于多步配制过程而产生的一些原始结构特殊性,并揭示了DOX释放曲线的基于扩散的行为,该行为与颗粒的形态密切相关。

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