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环糊精纳米海绵的演变

Evolution of Cyclodextrin Nanosponges.

作者信息

Caldera Fabrizio, Tannous Maria, Cavalli Roberta, Zanetti Marco, Trotta Francesco

机构信息

Department of Chemistry, University of Torino, via P. Giuria 7, 10125, Torino, Italy.

Department of Chemistry, University of Torino, via P. Giuria 7, 10125, Torino, Italy; Department of Chemistry, University of Balamand (UOB), Tripoli, Lebanon.

出版信息

Int J Pharm. 2017 Oct 15;531(2):470-479. doi: 10.1016/j.ijpharm.2017.06.072. Epub 2017 Jun 20.

Abstract

Cyclodextrin-based nanosponges (CD-NSs) are insoluble, highly cross-linked 3D network polymers used in several scientific and technological fields, the main area of investigation concerns the pharmaceutical applications, in which CD-NSs have been mostly employed as drug delivery systems. CD-NSs can be generally grouped into four consecutive generations, taking into account their chemical composition and properties. The 1st generation of NSs are plain nanosponges, subdivided into four main types: urethane, carbonate, ester and ether NSs, depending on the chemical nature of the functional group connecting the CD to the cross-linker. The 2nd generation of NSs are modified nanosponges characterized by specific properties, such as fluorescence and electric charge. The 3rd generation of NSs is represented by stimuli-responsive CD polymers, which are able to modulate their behavior according to external variations in the environment, such as pH and temperature gradients, oxidative/reducing conditions, and finally the 4th generation of NSs, a new family of molecularly imprinted CD polymers (MIPs), exhibiting a high selectivity towards specific molecules. The following review focuses on the evolution of cyclodextrin nanosponges, listing some examples of each generation.

摘要

基于环糊精的纳米海绵(CD - NSs)是不溶性的、高度交联的三维网络聚合物,应用于多个科技领域,主要研究领域涉及药物应用,其中CD - NSs大多被用作药物递送系统。考虑到其化学成分和性质,CD - NSs通常可分为连续的四代。第一代纳米海绵是普通纳米海绵,根据连接环糊精与交联剂的官能团的化学性质,可细分为四种主要类型:聚氨酯、碳酸盐、酯和醚纳米海绵。第二代纳米海绵是具有特定性质(如荧光和电荷)的改性纳米海绵。第三代纳米海绵以刺激响应性环糊精聚合物为代表,它们能够根据环境的外部变化(如pH值和温度梯度、氧化/还原条件)调节自身行为,最后是第四代纳米海绵,即一类新型的分子印迹环糊精聚合物(MIPs),对特定分子具有高选择性。以下综述重点关注环糊精纳米海绵的发展历程,并列举每一代的一些实例。

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