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化学交联和接枝的环糊精水凝胶:从纳米结构到载药医疗器械。

Chemically cross-linked and grafted cyclodextrin hydrogels: from nanostructures to drug-eluting medical devices.

机构信息

Departamento de Farmacia y Tecnologia Farmaceutica, Facultad de Farmacia, Universidad de Santiago de Compostela, 15782-Santiago de Compostela, Spain.

出版信息

Adv Drug Deliv Rev. 2013 Aug;65(9):1188-203. doi: 10.1016/j.addr.2013.04.015. Epub 2013 Apr 28.

Abstract

The unique ability of cyclodextrins (CDs) to form inclusion complexes can be transmitted to polymeric networks in which CDs are chemically grafted or cross-linked. Combination of CDs and hydrogels in a single material leads to synergic properties: the hydrophilic network enhances biocompatibility and prevents dilution in the physiological medium increasing the stability of the inclusion complexes, while CDs finely tune the mechanical features and the stimuli-responsiveness and provide affinity-based regulation of drug loading and release. Therefore, CD-functionalized materials are opening new perspectives in pharmacotherapy, emerging as advanced delivery systems (DDS) for hydrophobic and hydrophilic drugs to be administered via almost any route. Medical devices (catheters, prosthesis, vascular grafts, bone implants) can also benefit from surface grafting or thermofixation of CDs. The present review focuses on the approaches tested to synthesize nano- to macro-size covalently cross-linked CD networks: i) direct cross-linking through condensation with di- or multifunctional reagents, ii) copolymerization of CD derivatives with acrylic/vinyl monomers, and iii) grafting of CDs to preformed medical devices. Examples of the advantages of having the CDs chemically bound among themselves and to substrates are provided and their applicability in therapeutics discussed.

摘要

环糊精(CDs)形成包合物的独特能力可以传递到化学接枝或交联 CD 的聚合物网络中。将 CDs 和水凝胶组合在单一材料中会产生协同性质:亲水性网络提高了生物相容性,并防止在生理介质中稀释,从而增加了包合物的稳定性,而 CDs 则可以精细地调整机械性能和刺激响应性,并提供基于亲和力的药物负载和释放调节。因此,CD 功能化材料为药物治疗开辟了新的前景,成为通过几乎任何途径给药的疏水性和亲水性药物的先进给药系统(DDS)。医疗器械(导管、假体、血管移植物、骨植入物)也可以受益于 CDs 的表面接枝或热固定。本文综述了用于合成纳米至宏观尺寸的共价交联 CD 网络的方法:i)通过与二官能或多功能试剂缩合进行直接交联,ii)CD 衍生物与丙烯/乙烯基单体的共聚,以及 iii)将 CDs 接枝到预先形成的医疗器械上。提供了将 CDs 化学结合在一起和与基质结合的优点的实例,并讨论了它们在治疗学中的适用性。

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