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首页> 外文期刊>Expert opinion on drug delivery >Drug delivery vehicles with improved encapsulation efficiency: taking advantage of specific drug-carrier interactions.
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Drug delivery vehicles with improved encapsulation efficiency: taking advantage of specific drug-carrier interactions.

机译:具有提高封装效率的药物输送载体:利用特定的药物-载体相互作用。

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摘要

INTRODUCTION: Drug encapsulation strategies are vital for the delivery of poorly soluble, fragile or toxic compounds. Increasing a drug's encapsulation efficiency in drug carrier particles can achieve a stronger therapeutic effect along with minimized side effects. For these reasons, new encapsulation methods are developed by using new materials and various types of drug-carrier interaction. AREAS COVERED: Strategies used for drug encapsulation are discussed in this review, focusing particularly on approaches leading to high encapsulation ratios resulting from specific interactions between the drug and the carrier. In the first part, classical encapsulation by hydrophobic self-assembly, its limitations and improvements are briefly discussed. Following this, encapsulation strategies for specific drugs are reviewed, where particular kinds of interaction play a role between the drug and the encapsulating material, which can lead to dramatically increased entrapment. Such specific approaches can be utilized more generically for various classes of molecules with similar properties, with regard to their ability to participate in a given kind of interaction. EXPERT OPINION: With the focus on delivering a high drug dose precisely to the site of action, high encapsulation efficiency is the first thing to consider in drug development. Academic research shows considerable interest in specific encapsulation, and it seems to be an established trend now to design drug delivery particles to achieve the most favorable properties. The authors believe the research in this area will focus on material properties and interactions between the drug and the carrier to ensure high drug loading into particles.
机译:简介:药物封装策略对于递送难溶,易碎或有毒化合物至关重要。提高药物在药物载体颗粒中的包封效率可以实现更强的治疗效果以及最小的副作用。由于这些原因,通过使用新材料和各种类型的药物-载体相互作用开发了新的包囊方法。涵盖的领域:本篇综述讨论了用于药物包封的策略,特别侧重于由药物与载体之间的特定相互作用导致高包封率的方法。在第一部分中,简要讨论了通过疏水自组装进行的经典封装,其局限性和改进。此后,对特定药物的包封策略进行了综述,其中特定种类的相互作用在药物和包封材料之间起着重要作用,这可能导致截获量急剧增加。就它们参与给定种类的相互作用的能力而言,这种特定方法可以更普遍地用于具有相似特性的各种类别的分子。专家意见:着眼于将高剂量的药物精确地递送至作用部位,高封装效率是药物开发中首先要考虑的问题。学术研究显示出对特定封装的浓厚兴趣,并且设计药物递送颗粒以实现最有利的特性现在似乎已成为一种趋势。作者认为,该领域的研究将集中在药物的性质和药物与载体之间的相互作用上,以确保药物在颗粒中的负载较高。

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