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Design and Characterization of Glyceryl Monooleate-Nanostructures Containing Doxorubicin Hydrochloride

机译:含有多柔比星盐酸盐蛋白蛋白甘油酯的甘油单烯烃 - 纳米结构的设计与鉴定

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摘要

Glyceryl monooleate (GMO) is one of the most popular amphiphilic lipids, which, in the presence of different amounts of water and a proper amount of stabilizer, can promote the development of well defined, thermodynamically stable nanostructures, called lyotropic liquid crystal dispersions. The aim of this study is based on the design, characterization, and evaluation of the cytotoxicity of lyotropic liquid crystal nanostructures containing a model anticancer drug such as doxorubicin hydrochloride. The drug is efficiently retained by the GMO nanosystems by a remote loading approach. The nanostructures prepared with different non-ionic surfactants (poloxamers and polysorbates) are characterized by different physico-chemical features as a function of several parameters, i.e., serum stability, temperature, and different pH values, as well as the amount of cryoprotectants used to obtain suitable freeze-dried systems. The nanostructures prepared with poloxamer 407 used as a stabilizer show an increased toxicity of the entrapped drug on breast cancer cell lines (MCF-7 and MDA-MB-231) due to their ability to sensitize multidrug-resistant (MDR) tumor cells through the inhibition of specific drug efflux transporters. Moreover, the interaction between the nanostructures and the cells occurs after just a few hours, evidencing a huge cellular uptake of the nanosystems.
机译:Glyceryl Monooleate(GMO)是最受欢迎的两亲脂质之一,在不同量的水和适当量的稳定剂存在下,可以促进良好定义的热力学稳定的纳米结构的发育,称为增压液晶体分散体。本研究的目的是基于含有模型抗癌药物如盐酸盐蛋白的模型抗癌药物的细胞毒性的设计,表征和评价。通过远程加载方法,通过GMO纳米系统有效地保留该药物。用不同的非离子表面活性剂(泊洛沙姆和聚山梨醇酯)制备的纳米结构以不同的物理化学特征为特征,其具有若干参数,即血清稳定性,温度和不同pH值,以及用于用于的冷冻保护剂量获得合适的冷冻干燥系统。用用作稳定剂的泊洛沙姆407制备的纳米结构表明,由于它们能够通过敏感多药(MDR)肿瘤细胞的能力,因此患乳腺癌细胞系(MCF-7和MB-231)上的捕获药的毒性增加抑制特定药物流出转运蛋白。此外,纳米结构和细胞之间的相互作用在几小时之后发生,证明了纳米系统的巨大细胞吸收。

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