Institute of Organic Chemistry and Macromolecular Chemistry, Friedrich Schiller University Jena, Humboldtstraße 10, Jena D-07743, Germany.
Jena Center for Soft Matter (JCSM), Friedrich Schiller University Jena, Philosophenweg 7, Jena D-07743, Germany.
Biomacromolecules. 2021 Apr 12;22(4):1458-1471. doi: 10.1021/acs.biomac.0c01661. Epub 2021 Feb 8.
We herein report the fabrication of core-crosslinked, fluorescent, and surface-functionalized worm-like block copolymer micelles as drug delivery vehicles. The polyether-based diblock terpolymer [allyl-poly(ethylene oxide)--poly(2-ethylhexyl glycidyl ether--furfuryl glycidyl ether)] was synthesized anionic ring opening polymerization, and self-assembly in water as a selective solvent led to the formation of long filomicelles. Subsequent cross-linking was realized using hydrophobic bismaleimides as well as a designed fluorescent cross-linker for thermally induced Diels-Alder reactions with the furfuryl units incorporated in the hydrophobic block of the diblock terpolymer. As a fluorescent cross-linker, we synthesized and incorporated a cyanine 5-based bismaleimide in the cross-linking process, which can be used for fluorescence tracking of the particles. Furthermore, we covalently attached glucose to the allyl end groups present on the surface of the micelles to investigate active glucose-mediated transport into suitable cell lines. First studies in 2D as well as 3D cell culture models suggest a glucose-dependent uptake of the particles into cells despite their unusually large size compared to other nanoparticle systems used in drug delivery.
我们在此报告了核交联、荧光和表面功能化的蠕虫状嵌段共聚物胶束作为药物传递载体的制备。基于聚醚的二嵌段三元共聚物[烯丙基-聚(环氧乙烷)-聚(2-乙基己基缩水甘油醚-糠基缩水甘油醚)]通过阴离子开环聚合合成,并在水相中自组装作为选择性溶剂,导致长丝状胶束的形成。随后使用疏水性双马来酰亚胺以及设计的用于热诱导 Diels-Alder 反应的荧光交联剂进行交联,该反应与二嵌段三元共聚物疏水性嵌段中包含的糠基单元发生反应。作为荧光交联剂,我们合成并在交联过程中引入了基于菁染料 5 的双马来酰亚胺,可用于粒子的荧光追踪。此外,我们将葡萄糖共价连接到胶束表面存在的烯丙基末端基团上,以研究主动葡萄糖介导的进入合适细胞系的运输。二维和三维细胞培养模型的初步研究表明,尽管与用于药物传递的其他纳米颗粒系统相比,这些粒子的尺寸异常大,但仍存在葡萄糖依赖性的细胞摄取。