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使用细乳液聚合制备具有特定靶向和释放性能的纳米胶囊。

Nanocapsules with specific targeting and release properties using miniemulsion polymerization.

机构信息

Max Planck Institute for Polymer Research , Ackermannweg 10, 55128 Mainz , Germany.

出版信息

Expert Opin Drug Deliv. 2013 May;10(5):593-609. doi: 10.1517/17425247.2013.772976. Epub 2013 Feb 22.

Abstract

INTRODUCTION

The field of application for nanosized materials ranges from mere technical purposes to a growing field of applications in biomedicine. Among the different techniques and processes to produce these materials for encapsulation of reporter molecules and drugs, the miniemulsion process has been proven to be highly adaptable to these specific needs.

AREAS COVERED

The review covers the recent developments in the field of miniemulsion as a very powerful technique for the formation of complex carriers for the encapsulation of different kinds of reporter molecule and drugs. The use of a wide variety of polymerization techniques in the miniemulsion process and possible utilization of a wide range of monomers as requested by the biomedical applications is demonstrated. Hereby important factors, such as size, shape, degradation, release kinetics and surface functionalization can be tuned as requested. Furthermore, the inclusion of many payloads, for example, magnetic resonance imaging markers and chemotherapeutic drugs, in a highly controlled manner is discussed. Not only hydrophobic but also hydrophilic substances can be elegantly incorporated.

EXPERT OPINION

Further investigations should be focused on the body distribution and intracellular degradation of nanoparticles and nanocapsules. For the former, a better understanding of the interaction with proteins from blood plasma and other body fluids is required. While understanding the uptake mechanisms of nanomaterials into cells has been improved during the last decade, there is still no good methodology to determine the intracellular degradation mechanisms.

摘要

简介

纳米材料的应用领域从单纯的技术目的扩展到生物医学中越来越多的应用领域。在用于封装报告分子和药物的这些材料的不同技术和工艺中,微乳液工艺已被证明非常适合这些特殊需求。

涵盖领域

本综述涵盖了微乳液作为一种非常强大的技术,用于形成用于封装各种报告分子和药物的复杂载体的最新发展。展示了在微乳液工艺中使用多种聚合技术以及根据生物医学应用的要求可能利用各种单体的可能性。通过这种方式,可以根据需要调整重要因素,如尺寸、形状、降解、释放动力学和表面功能化。此外,还讨论了以高度受控的方式包含许多有效载荷,例如磁共振成像标记物和化疗药物。不仅可以优雅地包含疏水性物质,也可以包含亲水性物质。

专家意见

进一步的研究应集中在纳米粒子和纳米胶囊的体内分布和细胞内降解上。对于前者,需要更好地了解与血浆和其他体液中的蛋白质的相互作用。虽然在过去十年中,人们对纳米材料进入细胞的摄取机制有了更好的理解,但仍没有很好的方法来确定细胞内降解机制。

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