Supramolecular and Biomaterials Chemistry, Leiden Institute of Chemistry, Leiden University, PO Box 9502, 2300 RA Leiden, The Netherlands.
Biomacromolecules. 2020 Mar 9;21(3):1060-1068. doi: 10.1021/acs.biomac.9b01318. Epub 2020 Feb 21.
Supramolecular polymers are attractive scaffolds for use as nanocarriers in drug delivery thanks to their modularity and easy fabrication; however, a molecular view into their in vivo behavior is lacking. Herein, we prepare fluorescent squaramide-based supramolecular polymer nanoparticles that range from fibers to spheres while maintaining their surface chemistry and near-neutral surface charge by a co-assembly approach involving a sulfo-cyanine-labeled monomer to track their in vivo biodistribution behavior and clearance in optically transparent zebrafish embryos. Evasion of macrophages, localization of the fibrillar aggregates in the caudal vein, and association with scavenger endothelial cells are observed. The interaction of the fibrillar supramolecular nanoparticles with the caudal vein is abrogated in gene-edited zebrafish lacking Stabilin-2, a receptor analogously found in the mammalian liver, providing a molecular view into their interaction with scavenger endothelial cells. We further show that this interaction can be tuned based on the choice of monomer and its resultant self-assembly.
超分子聚合物因其结构的可修饰性和易于制备而成为药物传递用纳米载体的理想支架;然而,其体内行为的分子层面的研究还很缺乏。在此,我们通过共组装的方法制备了荧光型螺二酰胺超分子聚合物纳米纤维到纳米球,该方法涉及一种磺酸基菁染料标记的单体,通过保持其表面化学性质和近中性表面电荷,从而追踪其在活体斑马鱼胚胎中的体内生物分布和清除行为。我们观察到了纳米纤维的逃避巨噬细胞作用、在尾静脉中的定位以及与清道夫内皮细胞的结合。在缺乏 Stabilin-2 的基因编辑斑马鱼中,纤维状超分子纳米颗粒与尾静脉的相互作用被阻断,Stabilin-2 是在哺乳动物肝脏中发现的一种类似受体,为其与清道夫内皮细胞的相互作用提供了分子层面的研究。我们进一步表明,这种相互作用可以根据单体的选择及其自组装的结果进行调节。