Faculty of Pharmaceutical Sciences, University of Iceland, Hofsvallagata 53, IS-107 Reykjavik, Iceland.
Int J Pharm. 2012 May 30;428(1-2):152-63. doi: 10.1016/j.ijpharm.2012.02.038. Epub 2012 Mar 2.
Hydrophilic nanogels combine the advantages of hydrogels with certain advantages that are inherent in their nanoscale size. Similar to macrogels, nanogels can contain and protect drugs and regulate their release by incorporating high-affinity functional groups, stimuli-responsive conformations and biodegradable bonds into the polymer network. Similar to nanoparticles, nanogels can easily be administered in liquid form for parenteral drug delivery. The nanoscale size of nanogels gives them a high specific surface area that is available for further bioconjugation of active targeting agents. Biodistribution and drug release can be modulated through size adjustments. The incorporation of hydrophilic cyclodextrin (CD) moieties into the polymeric network of the nanogels provides them with a drug loading and release mechanism that is based on the formation of inclusion complexes without decreasing the hydrophilicity of the network. The covalent attachment of CD molecules to the chemically crosslinked networks may enable the CDs to display fully their ability to form complexes, while simultaneously preventing drug release upon media dilution. The preparation, characterization and advantages for pharmaceutical and biomedical applications of CD-based nanogels are reviewed in this article.
水凝胶结合了水凝胶的优点和其纳米尺寸所固有的某些优势。类似于大凝胶,纳米凝胶可以通过将高亲和力的功能基团、刺激响应构象和可生物降解键合到聚合物网络中,来包含和保护药物并调节其释放。类似于纳米粒子,纳米凝胶可以很容易地以液体形式给药,用于药物的肠胃外给药。纳米凝胶的纳米尺寸使其具有高比表面积,可进一步进行主动靶向试剂的生物偶联。通过调整尺寸可以调节生物分布和药物释放。将亲水性环糊精 (CD) 部分引入纳米凝胶的聚合物网络中,为其提供了一种基于形成包合物的药物负载和释放机制,而不会降低网络的亲水性。CD 分子的化学交联网络的共价连接可以使 CD 分子充分发挥其形成复合物的能力,同时防止在介质稀释时药物释放。本文综述了基于 CD 的纳米凝胶的制备、表征及其在药物和生物医学应用中的优势。