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Self-assembled rosette nanotubes for incorporating hydrophobic drugs in physiological environments

机译:自组装玫瑰花纳米管,用于在生理环境中掺入疏水性药物

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摘要

Rosette nanotubes (RNTs) are novel, biomimetic, injectable, self-assembled nanomaterials. In previous studies, materials coated with RNTs have significantly increased cell growth (eg, osteoblasts, chondrocytes, and endothelial cells) due to the favorable cellular environment created by RNTs. It has also been suggested that the tubular RNT structures formed by base stacking and hydrophobic interactions can be used for drug delivery, and this possibility has not been studied to date. Here we investigated methods to load and deliver tamoxifen (TAM, a hydrophobic anticancer drug) using two different types of RNTs: single- base RNTs and twin-base RNTs. Drug-loaded RNTs were characterized by nuclear magnetic resonance spectroscopy, diffusion-ordered nuclear magnetic resonance spectroscopy (DOSY NMR), and ultraviolet-visible (UV-Vis) spectroscopy at different ratios of twin-base RNTs to TAM. The results demonstrated successful incorporation of hydrophobic TAM into RNTs. Importantly, because of the hydrophilicity of the outer surface of the RNTs, TAM-loaded RNTs were dissolved in water, and thus have great potential to deliver hydrophobic drugs in various physiological environments. The results also showed that twin-base RNTs further improved TAM oading. Therefore, this study demonstrated that hydrophobic pharmaceutical agents (such as TAM), once considered hard to deliver, can be easily incorporated into RNTs for anticancer treatment purposes. \ua9 2011 Song et al, publisher and licensee Dove Medical Press Ltd.
机译:玫瑰花碳纳米管(RNT)是新型的,仿生的,可注射的,自组装的纳米材料。在先前的研究中,由于RNT产生的有利细胞环境,涂有RNT的材料具有显着增加的细胞生长(例如,成骨细胞,软骨细胞和内皮细胞)。还已经提出,通过碱基堆积和疏水相互作用形成的管状RNT结构可用于药物递送,并且迄今为止尚未研究这种可能性。在这里,我们研究了使用两种不同类型的RNT装载和递送他莫昔芬(TAM,一种疏水性抗癌药物)的方法:单碱基RNT和双碱基RNT。通过核磁共振波谱,扩散有序核磁共振波谱(DOSY NMR)和紫外可见(UV-Vis)光谱以双基RNT与TAM的不同比率表征载药的RNT。结果证明疏水性TAM成功掺入到RNT中。重要的是,由于RNT的外表面具有亲水性,因此TAM负载的RNT溶解在水中,因此具有在各种生理环境中输送疏水性药物的巨大潜力。结果还表明,双基RNT进一步改善了TAM的成色。因此,这项研究表明,曾经被认为难以递送的疏水性药物(例如TAM)可以很容易地掺入RNT中以用于抗癌治疗。 \ ua9 2011 Song等人,出版商和被许可人Dove Medical Press Ltd.

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