...
首页> 外文期刊>Expert opinion on drug delivery >Physical hydrogels with self-assembled nanostructures as drug delivery systems.
【24h】

Physical hydrogels with self-assembled nanostructures as drug delivery systems.

机译:具有自组装纳米结构的物理水凝胶作为药物输送系统。

获取原文
获取原文并翻译 | 示例

摘要

INTRODUCTION: As an essential complement to chemically crosslinked hydrogels, drug delivery systems based on physical hydrogels with self-assembled nanostructures are gaining increasing attention, owing to potential advantages of reduced toxicity, convenience of in situ gel formation, stimuli-responsiveness, reversible sol-gel transition, and improved drug loading and delivery profiles. AREAS COVERED: In this review, drug delivery systems based on physical hydrogels are discussed according to their self-assembled nanostructures, such as micelles, layer-by-layer constructs, supramolecular inclusion complexes, polyelectrolyte complexes and crystalline structures. The driving forces of the self-assembly include hydrophobic interaction, hydrogen bonding, electrostatic interaction, pi-pi stacking and weak van der Waals forces. Stimuli-responsive properties of physical hydrogels, including thermo- and pH-sensitivity, are considered with particular focus on self-assembled nanostructures. EXPERT OPINION: Fabricating self-assembled nanostructures in drug delivery hydrogels, via physical interactions between polymer-polymer and polymer-drug, requires accurately controlled macro- or small molecular architecture and a comprehensive knowledge of the physicochemical properties of the therapeutics. A variety of nanostructures within hydrogels, with which payloads may interact, provide useful means to stabilize the drug form and control its release kinetics.
机译:简介:作为化学交联水凝胶的必不可少的补充,基于具有自组装纳米结构的物理水凝胶的药物递送系统正受到越来越多的关注,因为它具有降低毒性,原位形成凝胶的便利性,刺激响应性,可逆溶胶-溶胶的潜在优势。凝胶转变,并改善了药物载量和传递曲线。覆盖的领域:在这篇综述中,根据物理水凝胶的自组装纳米结构,如胶束,逐层构建体,超分子包合物,聚电解质复合物和晶体结构,讨论了药物输送系统。自组装的驱动力包括疏水相互作用,氢键,静电相互作用,π-π堆积和弱范德华力。物理水凝胶的刺激响应特性(包括热敏感性和pH敏感性)被认为特别关注于自组装纳米结构。专家意见:通过聚合物-聚合物与聚合物-药物之间的物理相互作用,在药物输送水凝胶中制造自组装纳米结构,需要精确控制的大分子或小分子结构,以及对治疗剂理化性质的全面了解。有效载荷可能与水凝胶相互作用的水凝胶中的各种纳米结构,为稳定药物形式和控制其释放动力学提供了有用的手段。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号