NanoBioMedical Centre , Adam Mickiewicz University in Poznan , Umultowska 85 , 61-614 Poznan , Poland.
ACS Appl Mater Interfaces. 2018 Mar 7;10(9):7541-7561. doi: 10.1021/acsami.7b08392. Epub 2017 Aug 17.
Since Lee published a pioneering paper about polydopamine (PDA), application of that polymer in a number of areas has grown enormously in the last 10 years and is still growing. PDA's spectacular success can be attributed to its unique features, i.e., simple preparation protocol, strong adhesive properties, easy and straightforward functionalization, and biocompatibility. Therefore, this polymer has attracted the attention of a vast group of scientists, including those working in the field of nanomedicine. In consequence, polydopamine has been merged with various nanostructures that differ in size and nature, which has resulted in novel types of multifunctional nanomaterials that have recently been extensively exploited in nanomedicine and particularly in cancer therapy. The aim of this article is to offer insight into the latest achievements (up until the end of 2016) in the field of synthesis and application of nanomaterials based on polydopamine and their application in cancer therapy. The conclusions regarding the application of polydopamine-based nanoplatforms in this area and future prospects are given at the end.
自李发表了一篇关于聚多巴胺(PDA)的开创性论文以来,该聚合物在过去 10 年中的许多领域的应用已经有了巨大的增长,并且还在继续增长。PDA 的巨大成功可以归因于其独特的特性,即简单的制备方案、强粘附性、简单且直接的功能化以及生物相容性。因此,这种聚合物引起了广大科学家的关注,包括那些从事纳米医学领域的科学家。结果,聚多巴胺已经与各种在大小和性质上不同的纳米结构结合在一起,从而产生了新型的多功能纳米材料,这些纳米材料最近在纳米医学中得到了广泛的应用,尤其是在癌症治疗中。本文的目的是提供有关基于聚多巴胺的纳米材料的合成和应用的最新进展(截至 2016 年底)的见解,并探讨它们在癌症治疗中的应用。最后给出了关于基于聚多巴胺的纳米平台在该领域的应用和未来前景的结论。