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首页> 外文期刊>Frontiers in Bioengineering and Biotechnology >Lipid-Based Nanovesicles for Simultaneous Intracellular Delivery of Hydrophobic, Hydrophilic, and Amphiphilic Species
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Lipid-Based Nanovesicles for Simultaneous Intracellular Delivery of Hydrophobic, Hydrophilic, and Amphiphilic Species

机译:基于脂质的纳米粒子用于同时疏水,亲水和两亲物质的细胞内递送

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Lipid nanovesicles (NVs) are the first nanoformulation that entered the clinical use in oncology for the treatment of solid tumors. They are indeed versatile systems which can be loaded with either hydrophobic or hydrophilic molecules, for both imaging and drug delivery, and with high biocompatibility and limited immunogenicity. In the present work, NVs with a lipid composition resembling that of natural vesicles were prepared using the ultrasonication method. The NVs were successfully loaded with fluorophores molecules (DOP-F-DS and a fluorescent protein), inorganic nanoparticles (quantum dots and magnetic nanoparticles), and anti-cancer drugs (SN-38 and doxorubicin). The encapsulation of such different molecules showed the versatility of the developed systems. The size of the vesicles varied from 100 up to 300 nm depending on the type of loaded species, which were accommodated either into the lipid bilayer or into the aqueous core according to their hydrophobic or hydrophilic nature. Viability assays were performed on cellular models of breast cancer (MCF-7 and MDA-MB-231). Results showed that NVs with encapsulated both drugs simultaneously led to a significant reduction of the cellular activity (up to 22%) compared to the free drugs or to the NVs encapsulated with only one drug. Lipidomic analysis suggested that the mechanism of action of the drugs is the same, whether they are free or encapsulated, but administration of the drugs by means of nanovesicles is more efficient in inducing cellular damage, likely because of a quicker internalization and a sustained release. This study confirms the versatility and the potential of lipid NVs for cancer treatment, as well as the validity of the ultrasound preparation method for their preparation.
机译:脂质纳米粒子(NVS)是第一纳米型纳米型,其进入肿瘤学中的临床用途,用于治疗实体肿瘤。它们确实是可以用疏水性或亲水分子装载的多功能系统,用于成像和药物递送,并且具有高生物相容性和有限的免疫原性。在本作工作中,使用超声方法制备具有类似于天然囊泡的脂质组合物的NV。 NVS成功地装载荧光团分子(DOP-F-DS和荧光蛋白),无机纳米颗粒(量子点和磁性纳米粒子)和抗癌药物(SN-38和多柔比星)。这种不同分子的封装显示了发育系统的多功能性。根据其疏水性或亲水性,根据装载物种的类型,囊泡的尺寸从100多达300nm变化,这取决于加载的物种的类型,其被容纳在脂质双层或含水核心中。对乳腺癌细胞模型进行活力测定(MCF-7和MDA-MB-231)。结果表明,与自由药物或仅用一种药物包封的NVS相比,封装的两种药物的NVS同时导致细胞活性的显着降低(高达22%)。脂质体分析表明,药物的作用机制是相同的,无论它们是自由还是包封,还通过纳米粒子给药给药在诱导细胞损伤方面更有效,可能是因为内化更快和持续释放。本研究证实了脂质NV用于癌症治疗的多功能性和潜力,以及超声制备方法的制备方法。

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