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Process intensification: Nano-carrier formation by a continuous dense gas process

机译:强化工艺:通过连续致密气体工艺形成纳米载体

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Formation of nano-carriers such as vesicles and micelles using dense gas processing has been under extensive research for decades. Several dense gas processes have been developed to produce nano-carriers, most of them being batch processes. In the present study, a novel continuous dense gas, known as nano-carrier by a continuous dense gas (NADEG) process was developed as an evolution of a dense gas batch process known as the Depressurization of an Expanded Solution into Aqueous Media (DESAM) process. Transforming a batch process into a continuous process is a main aspect of process intensification. The NADEG process developed in this work enhances the production output of the batch process while producing nano-carriers free of harmful residual organic solvent. The NADEG process is a one-step process for the production of nano-carriers with lower size and higher encapsulation efficiency than the nano-carriers produced by other batch processes. Encapsulation efficiencies as high as 15% were achieved using liposomes to encapsulate a model hydrophilic compound (isoniazid) while encapsulation efficiencies of 10% were achieved in polymersomes for the same model compound. (C) 2015 Elsevier B.V. All rights reserved.
机译:数十年来,利用密集的气体处理形成诸如泡囊和胶束之类的纳米载体已受到广泛研究。已经开发了几种致密气体工艺来生产纳米载体,其中大多数是间歇工艺。在本研究中,随着稠密气体批处理过程(称为将溶液膨胀成水的降压(DESAM))的发展,开发了一种新型的连续稠密气体,称为连续稠密气体(NADEG)工艺的纳米载体。处理。将批处理过程转换为连续过程是过程强化的主要方面。在这项工作中开发的NADEG工艺提高了分批工艺的产量,同时生产了不含有害残留有机溶剂的纳米载体。 NADEG工艺是一步生产纳米载体的步骤,该纳米载体的尺寸和封装效率比其他分批工艺生产的纳米载体低。使用脂质体包封模型亲水性化合物(异烟肼)可实现高达15%的包封率,而对于同一模型化合物,在聚合物囊泡中可实现10%的包封率。 (C)2015 Elsevier B.V.保留所有权利。

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