Functional Polymer Materials, Chair for Chemical Technology of Material Synthesis and the Bavarian Polymer Institute, University of Würzburg , Röntgenring 11, 97070 Würzburg, Germany.
J Am Chem Soc. 2017 Aug 16;139(32):10980-10983. doi: 10.1021/jacs.7b05376. Epub 2017 Aug 8.
Polymer micelles offer the possibility to create a nanoscopic environment that is distinct from the bulk phase. They find applications in catalysis, drug delivery, cleaning, etc. Often, one simply distinguishes between hydrophilic and hydrophobic, but fine-tuning of the microenvironment is possible by adjusting the structure of the polymer amphiphile. Here, we investigated a small library of structurally similar amphiphiles based on poly(2-oxazoline)s and poly(2-oxazine)s with respect to their solubilization capacity for two extremely water insoluble drugs, curcumin and paclitaxel. We found very significant and orthogonal specificities even if only one methylene group is exchanged between the polymer backbone and side chain. More strikingly, we observed profound synergistic and antagonistic solubilization patterns for the coformulation of the two drugs. Our findings shed new light on host-guest interaction in polymer micelles and such pronounced host-guest specificities in polymer micelles may not only be interesting in drug delivery but also for applications such as micellar catalysis.
聚合物胶束提供了一种创建与本体相明显不同的纳米环境的可能性。它们在催化、药物传递、清洁等领域有应用。通常,人们只是简单地区分亲水性和疏水性,但通过调整聚合物两亲物的结构,可以对微环境进行精细调节。在这里,我们研究了一小批基于聚(2-恶唑啉)和聚(2-恶嗪)的结构相似的两亲物,以了解它们对两种极难溶于水的药物姜黄素和紫杉醇的溶解能力。即使在聚合物主链和侧链之间仅交换一个亚甲基,我们也发现了非常显著和正交的特异性。更引人注目的是,我们观察到两种药物共配制时存在深远的协同和拮抗溶解模式。我们的发现为聚合物胶束中的主客体相互作用提供了新的认识,聚合物胶束中如此显著的主客体特异性不仅在药物传递方面具有意义,而且在胶束催化等应用中也具有意义。