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乳化-扩散法对药物纳米颗粒制备的影响

Impact of the emulsification-diffusion method on the development of pharmaceutical nanoparticles.

作者信息

Quintanar-Guerrero David, Zambrano-Zaragoza María de la Luz, Gutierrez-Cortez Elsa, Mendoza-Munoz Nestor

机构信息

Laboratorio de Investigacion y Posgrado en Tecnologa Farmaceutica. Facultad de Estudios Superiores Cuautitlan, Universidad Nacional Autonoma de Mexico, Av. 1o. de Mayo s/n, Cuautitlan Izcalli, Estado de Mexico, Mexico, C.P. 54740.

出版信息

Recent Pat Drug Deliv Formul. 2012 Dec;6(3):184-94. doi: 10.2174/187221112802652642.

Abstract

Nanotechnology is having a profound impact in many scientific fields and it has become one of the most important and exciting discipline. Like all technological advances, nanotechnology has its own scientific basis with a broad interdisciplinary effect. Perhaps, we are witnessing an exponential growth of nanotechnology, reflection of this is the important increase in the number of patents, scientific papers and specialized "nano" meetings and journals. The impact in the pharmaceutical area is related to the use of colloidal drug delivery systems as carriers for bioactive agents, in particular, the nanoparticle technology. The term nanoparticles designates solid submicronic particles formed of acceptable materials (e.g. polymers, lipids, etc.) containing an active substance. It includes both nanospheres (matricial systems) and nanocapsules (membrane systems). The knowledge of the nanoparticle preparation methods is a key issue for the formulator involved with drug-delivery research and development. In general, the methods based on preformed polymers, in particular biodegradable polymers, are preferred due to their easy implementation and lower potential toxicity. One of the most widely used methods to prepare polymeric nanoparticles is emulsification-diffusion. This method has been discussed in some reviews that compile research works but has a small number of patents. In this review, the emulsification-diffusion method is discussed from a technological point of view in order to show the operating conditions and formulation variables from data extracted of recent patents and experimental works. The main idea is to provide the reader with a general guide for formulators to make decisions about the usefulness of this method to develop specific nanoparticulate systems. The first part of this review provides an overview of the emulsification-diffusion method to prepare polymeric nanoparticles, while the second part evaluates the influence of preparative variables on the properties of the obtained particles relating the events to the formation mechanism. Novel innovations and applications of the method have also been compiled.

摘要

纳米技术正在对许多科学领域产生深远影响,并且已成为最重要且最令人兴奋的学科之一。与所有技术进步一样,纳米技术有其自身的科学基础,并具有广泛的跨学科效应。或许,我们正在见证纳米技术呈指数级增长,这体现在专利数量、科学论文数量以及专门的“纳米”会议和期刊的显著增加上。纳米技术在制药领域的影响与将胶体药物递送系统用作生物活性剂的载体有关,尤其是纳米颗粒技术。术语“纳米颗粒”指的是由可接受材料(例如聚合物、脂质等)形成的包含活性物质的固体亚微米颗粒。它包括纳米球(基质系统)和纳米胶囊(膜系统)。对于从事药物递送研发的配方设计师而言,了解纳米颗粒制备方法是一个关键问题。一般来说,基于预制聚合物,特别是可生物降解聚合物的方法更受青睐,因为它们易于实施且潜在毒性较低。制备聚合物纳米颗粒最广泛使用的方法之一是乳化 - 扩散法。该方法在一些汇编研究工作的综述中已有讨论,但专利数量较少。在本综述中,将从技术角度讨论乳化 - 扩散法,以便从近期专利和实验工作中提取的数据展示操作条件和配方变量。主要目的是为配方设计师提供一个总体指南,以便他们就该方法用于开发特定纳米颗粒系统的实用性做出决策。本综述的第一部分概述了用于制备聚合物纳米颗粒的乳化 - 扩散法,而第二部分评估制备变量对所得颗粒性质的影响,并将这些情况与形成机制相关联。还汇编了该方法的新创新和应用。

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