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刺激响应型聚合物纳米载体用于活性化合物的控制传递:概念与应用。

Stimuli-responsive polymeric nanocarriers for the controlled transport of active compounds: concepts and applications.

机构信息

Organic and Macromolecular Chemistry, Department of Chemistry and Biochemistry, Freie Universität Berlin, Takustrasse 3, 14195 Berlin, Germany.

出版信息

Adv Drug Deliv Rev. 2012 Jun 15;64(9):866-84. doi: 10.1016/j.addr.2012.01.020. Epub 2012 Feb 11.

Abstract

The use of polymeric nanocarriers to transport active compounds like small-molecular drugs, peptides, or genes found an increased attention throughout the different fields of natural sciences. Not only that these nanocarriers enhance the properties of already existing drugs in terms of solubility, bioavailability, and prolonged circulation times, furthermore they can be tailor-made in such a manner that they selectively release their cargo at the desired site of action. For the triggered release, these so-called smart drug delivery systems are designed to react on certain stimuli like pH, temperature, redox potential, enzymes, light, and ultrasound. Some of these stimuli are naturally occurring in vivo, for example the difference in pH in different cellular compartments while others are caused by the disease, which is to be treated, like differences in pH and temperature in some tumor tissues. Other external applied stimuli, like light and ultrasound, allow the temporal and spatial control of the release, since they are not triggered by any biological event. This review gives a brief overview about some types of stimuli-responsive nanocarriers with the main focus on organic polymer-based systems. Furthermore, the different stimuli and the design of corresponding responsive nanocarriers will be discussed with the help of selected examples from the literature.

摘要

高分子纳米载体在不同的自然科学领域中得到了广泛的关注,用于运输小分子药物、肽或基因等活性化合物。这些纳米载体不仅可以提高已有药物的溶解度、生物利用度和延长循环时间等性能,而且可以通过定制的方式,使其在所需的作用部位选择性地释放其货物。为了实现触发式释放,这些所谓的智能药物输送系统被设计为对某些刺激物做出反应,例如 pH 值、温度、氧化还原电位、酶、光和超声等。其中一些刺激物在体内是自然存在的,例如不同细胞区室之间的 pH 值差异,而其他刺激物则是由待治疗的疾病引起的,例如一些肿瘤组织中的 pH 值和温度差异。其他外部施加的刺激物,如光和超声,可以实现释放的时空控制,因为它们不是由任何生物事件触发的。本文简要概述了一些类型的刺激响应型纳米载体,主要关注基于有机聚合物的系统。此外,还将借助文献中的一些示例,讨论不同的刺激物和相应的响应型纳米载体的设计。

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