Ian Wark Research Institute, University of South Australia, Mawson Lakes Boulevard, Adelaide, SA 5095, Australia.
Macromol Biosci. 2012 Aug;12(8):1048-52. doi: 10.1002/mabi.201200012. Epub 2012 Jul 20.
A new approach to engineer a local drug delivery system with delayed release using nanostructured surface with nanotube arrays is presented. TNT arrays electrochemically generated on a titanium surface are used as a model substrate. Polymer micelles as drug carriers encapsulated with drug are loaded at the bottom of the TNT structure and their delayed release is obtained by loading blank micelles (without drug) on the top. The delayed and time-controlled drug release is successfully demonstrated by controlling the ratio of blank and drug loaded-micelles. The concept is verified using four different polymer micelles (regular and inverted) loaded with water-insoluble (indomethacin) and water-soluble drugs (gentamicin).
提出了一种使用具有纳米管阵列的纳米结构化表面来工程化具有延迟释放的局部药物递送系统的新方法。在钛表面上电化学生成的 TNT 阵列被用作模型基底。将封装有药物的聚合物胶束作为药物载体装载在 TNT 结构的底部,并通过在顶部装载空白胶束(无药物)来获得延迟释放。通过控制空白和载药胶束的比例,成功地证明了延迟和时间控制的药物释放。该概念使用四种不同的聚合物胶束(常规和反转)进行了验证,这些胶束分别装载了水不溶性(吲哚美辛)和水溶性药物(庆大霉素)。