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首页> 外文期刊>ACS nano >Buckysomes: Fullerene-based nanocarriers for hydrophobic molecule delivery
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Buckysomes: Fullerene-based nanocarriers for hydrophobic molecule delivery

机译:Buckysomes:用于疏水分子递送的基于富勒烯的纳米载体

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摘要

We report the preparation and preliminary in vitro studies of nanocarriers termed "buckysomes," which are self-assembled, spherical nanostructures composed of the amphiphilic fullerene AF-1. By inducing AF-1 self-assembly at an elevated temperature of 70 °C, dense spherical buckysomes with diameters of 100-200 nm were formed, as observed by electron microscopy and dynamic light scattering. The amphiphilic nature of AF-1 results in the formation of many hydrophobic regions within the buckysomes, making them ideal for embedding hydrophobic molecules to be tested in a drug delivery scheme. After confirming the cellular internalization of buckysomes embedded with the hydrophobic fluorescent dye 1,1′-dioctadecyl-3,3,3′,3′- tetramethylindo-carbocyanine perchlorate, we embedded paclitaxel, a highly hydrophobic anticancer drug. The in vitro therapeutic efficacy of the paclitaxel-embedded buckysomes toward suppression of MCF-7 breast cancer cell growth was compared to that of Abraxane, a commercially available, nanoparticle-albumin-bound formulation of paclitaxel. Notably, the paclitaxel-embedded buckysomes demonstrated a similar efficacy to that observed with Abraxane in cell viability studies; these results were confirmed microscopically. Moreover, negative control studies of MCF-7 viability using empty buckysomes demonstrated that the buckysomes were not cytotoxic. The results of our studies suggest that buckysomes prepared from self-assembly of AF-1 at 70 °C are promising nanomaterials for the delivery of hydrophobic molecules.
机译:我们报告了纳米载体的制备和初步的体外研究,这些载体称为“巴基体”,它们是由两亲富勒烯AF-1组成的自组装球形纳米结构。通过在70°C的高温下诱导AF-1自组装,通过电子显微镜和动态光散射观察到,形成了直径为100-200 nm的致密球形布基体。 AF-1的两亲性质导致在Buckysome内形成许多疏水区域,使其成为将疏水分子嵌入药物递送方案的理想选择。在确认嵌入有疏水性荧光染料1,1'-二十八烷基-3,3,3',3'-四甲基吲哚-羰基花青高氯酸盐的布基体的细胞内在化之后,我们嵌入了紫杉醇,一种高度疏水的抗癌药物。将紫杉醇包埋的巴克虫体对抑制MCF-7乳腺癌细胞生长的体外治疗功效与市售的紫杉醇的纳米颗粒-白蛋白结合制剂Abraxane进行了比较。值得注意的是,紫杉醇包埋的巴基体在细胞活力研究中显示出与使用Abraxane观察到的相似的功效。这些结果在显微镜下得到证实。此外,使用空巴基体对MCF-7生存力进行的阴性对照研究表明,巴基体没有细胞毒性。我们的研究结果表明,由AF-1在70°C下自组装制备的buckysomes是有希望的用于疏水分子递送的纳米材料。

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