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一种生产脂质载体的新型、无毒且可扩展的方法。

A Novel, Nontoxic and Scalable Process to Produce Lipidic Vehicles.

作者信息

Naziris Nikolaos, Pippa Natassa, Demetzos Costas

机构信息

Section of Pharmaceutical Technology, Department of Pharmacy, School of Health Sciences, National and Kapodistrian University of Athens, Panepistimioupolis Zografou, 15771 Athens, Greece.

出版信息

Materials (Basel). 2020 Nov 8;13(21):5035. doi: 10.3390/ma13215035.

Abstract

Lipidic vehicles are novel industrial products, utilized as components for pharmaceutical, cosmeceutical and nutraceutical formulations. The present study concerns a newly invented method to produce lipidic vehicles in the nanoscale that is simple, nontoxic, versatile, time-efficient, low-cost and easy to scale up. The process is a modification of the heating method (MHM) and comprises (i) providing a mixture of an amphiphilic lipid and a charged lipid and/or a fluidity regulator in a liquid medium composed of water and a liquid polyol, (ii) stirring and heating the mixture in two heating steps, wherein the temperature of the second step is higher than the temperature of the first step and (iii) allowing the mixture to cool down to room temperature. The process leads to the self-assembly of nanoparticles of small size and good homogeneity, compared with conventional approaches that require additional size reduction steps. In addition, the incorporation of bioactive molecules, such as drugs, inside the nanoparticles is possible, while lyophilization of the products provides long-term stability. Most importantly, the absence of toxic solvents and the simplicity guarantee the safety and scalability of the process, distinguishing it from most prior art processes to produce of lipidic vehicles.

摘要

脂质载体是新型工业产品,用作药物、药妆品和营养保健品配方的成分。本研究涉及一种新发明的生产纳米级脂质载体的方法,该方法简单、无毒、通用、省时、低成本且易于扩大规模。该工艺是对加热法(MHM)的改进,包括:(i)在由水和液态多元醇组成的液体介质中提供两亲性脂质与带电脂质和/或流动性调节剂的混合物;(ii)分两个加热步骤搅拌并加热该混合物,其中第二步的温度高于第一步的温度;(iii)使混合物冷却至室温。与需要额外尺寸减小步骤的传统方法相比,该工艺可导致小尺寸且均匀性良好的纳米颗粒自组装。此外,可将生物活性分子(如药物)掺入纳米颗粒内部,而产品冻干可提供长期稳定性。最重要的是,无毒溶剂的不存在和工艺的简单性保证了该工艺的安全性和可扩展性,使其有别于大多数生产脂质载体的现有技术工艺。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0102/7664659/732d54df5ff5/materials-13-05035-g001.jpg

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