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双响应和多响应型聚合物纳米粒用于靶向药物传递的程序化控制。

Dual and multi-stimuli responsive polymeric nanoparticles for programmed site-specific drug delivery.

机构信息

Biomedical Polymers Laboratory, and Jiangsu Key Laboratory of Advanced Functional Polymer Design and Application, College of Chemistry, Chemical Engineering and Materials Science, Soochow University, Suzhou, PR China.

出版信息

Biomaterials. 2013 May;34(14):3647-57. doi: 10.1016/j.biomaterials.2013.01.084. Epub 2013 Feb 14.


DOI:10.1016/j.biomaterials.2013.01.084
PMID:23415642
Abstract

In the past decades, polymeric nanoparticles have emerged as a most promising and viable technology platform for targeted and controlled drug delivery. As vehicles, ideal nanoparticles are obliged to possess high drug loading levels, deliver drug to the specific pathological site and/or target cells without drug leakage on the way, while rapidly unload drug at the site of action. To this end, various "intelligent" polymeric nanoparticles that release drugs in response to an internal or external stimulus such as pH, redox, temperature, magnetic and light have been actively pursued. These stimuli-responsive nanoparticles have demonstrated, though to varying degrees, improved in vitro and/or in vivo drug release profiles. In an effort to further improve drug release performances, novel dual and multi-stimuli responsive polymeric nanoparticles that respond to a combination of two or more signals such as pH/temperature, pH/redox, pH/magnetic field, temperature/reduction, double pH, pH and diols, temperature/magnetic field, temperature/enzyme, temperature/pH/redox, temperature/pH/magnetic, pH/redox/magnetic, temperature/redox/guest molecules, and temperature/pH/guest molecules have recently been developed. Notably, these combined responses take place either simultaneously at the pathological site or in a sequential manner from nanoparticle preparation, nanoparticle transporting pathways, to cellular compartments. These dual and multi-stimuli responsive polymeric nanoparticles have shown unprecedented control over drug delivery and release leading to superior in vitro and/or in vivo anti-cancer efficacy. With programmed site-specific drug delivery feature, dual and multi-stimuli responsive nanoparticulate drug formulations have tremendous potential for targeted cancer therapy. In this review paper, we highlight the recent exciting developments in dual and multi-stimuli responsive polymeric nanoparticles for precision drug delivery applications, with a particular focus on their design, drug release performance, and therapeutic benefits.

摘要

在过去的几十年中,聚合物纳米粒子已成为靶向和控制药物输送的最有前途和可行的技术平台。作为载体,理想的纳米粒子必须具有高载药量,在药物泄漏的情况下将药物递送到特定的病理部位和/或靶细胞,而在作用部位则迅速卸载药物。为此,各种“智能”聚合物纳米粒子已被积极研究,这些纳米粒子可响应内部或外部刺激(如 pH 值、氧化还原、温度、磁场和光)释放药物。这些响应性纳米粒子虽然在不同程度上改善了体外和/或体内药物释放曲线,但仍有进一步提高药物释放性能的空间。为了进一步改善药物释放性能,最近开发了新型双和多刺激响应聚合物纳米粒子,这些纳米粒子可以响应两种或多种信号的组合,如 pH/温度、pH/氧化还原、pH/磁场、温度/还原、双 pH 值、pH 和二醇、温度/磁场、温度/酶、温度/pH/氧化还原、温度/pH/磁场、pH/氧化还原/磁场、温度/氧化还原/客体分子和温度/pH/客体分子。值得注意的是,这些联合反应要么同时在病理部位发生,要么从纳米粒子制备、纳米粒子输送途径到细胞区室以顺序方式发生。这些双和多刺激响应聚合物纳米粒子对药物输送和释放具有前所未有的控制能力,从而提高了体外和/或体内抗癌疗效。具有程序化的靶向药物输送功能,双和多刺激响应纳米颗粒药物制剂具有巨大的靶向癌症治疗潜力。在这篇综述论文中,我们重点介绍了用于精确药物输送应用的双和多刺激响应聚合物纳米粒子的最新令人兴奋的发展,特别关注它们的设计、药物释放性能和治疗益处。

相似文献

[1]
Dual and multi-stimuli responsive polymeric nanoparticles for programmed site-specific drug delivery.

Biomaterials. 2013-2-14

[2]
Functional block copolymer assemblies responsive to tumor and intracellular microenvironments for site-specific drug delivery and enhanced imaging performance.

Chem Soc Rev. 2013-4-3

[3]
Stimuli-responsive polymersomes for programmed drug delivery.

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[4]
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Adv Drug Deliv Rev. 2012-2-11

[5]
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Chem Biol Interact. 2018-7-20

[6]
Controlled release and assembly of drug nanoparticles via pH-responsive polymeric micelles: a theoretical study.

J Phys Chem B. 2012-5-10

[7]
[Advances in the study of tumor pH-responsive polymeric micelles for cancer drug targeting delivery].

Yao Xue Xue Bao. 2009-12

[8]
pH and thermo dual-stimuli-responsive drug carrier based on mesoporous silica nanoparticles encapsulated in a copolymer-lipid bilayer.

ACS Appl Mater Interfaces. 2013-10-30

[9]
Stimulus-sensitive polymeric nanoparticles and their applications as drug and gene carriers.

Adv Healthc Mater. 2012-11-2

[10]
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