Department of Infectious Diseases, Aarhus University Hospital, 8200, Denmark; Department of Chemistry, Aarhus University, 8000, Denmark.
Department of Chemistry, Aarhus University, 8000, Denmark.
J Control Release. 2018 Apr 10;275:53-66. doi: 10.1016/j.jconrel.2018.02.012. Epub 2018 Feb 9.
Macromolecular (pro)drugs hold much promise as broad-spectrum antiviral agents as either microbicides or carriers for intracellular delivery of antiviral drugs. Intriguing opportunity exists in combining the two modes of antiviral activity in the same polymer structure such that the same polymer acts as a microbicide and also serves to deliver the conjugated drug (ribavirin) into the cells. We explore this opportunity in detail and focus on the polymer backbone as a decisive constituent of such formulations. Fourteen polyanions (polycarboxylates, polyphosphates and polyphosphonates, and polysulfonates) were analyzed for blood pro/anti coagulation effects, albumin binding and albumin aggregation, inhibitory activity on polymerases, cytotoxicity, and anti-inflammatory activity in stimulated macrophages. Ribavirin containing monomers were designed to accommodate the synthesis of macromolecular prodrugs with disulfide-exchange triggered drug release. Kinetics of drug release was fast in all cases however enhanced hydrophobicity of the polymer significantly slowed release of ribavirin. Results of this study present a comprehensive view on polyanions as backbone for macromolecular prodrugs of ribavirin as broad-spectrum antiviral agents.
作为广谱抗病毒药物,大分子(前体)药物作为杀菌剂或细胞内递药载体具有很大的应用前景。令人感兴趣的是,在同一聚合物结构中结合两种抗病毒活性模式,使得同一种聚合物既可以作为杀菌剂,又可以将共轭药物(利巴韦林)递送到细胞内。我们详细探讨了这种可能性,并重点研究了聚合物主链作为此类制剂的决定性组成部分。分析了 14 种聚阴离子(聚羧酸、聚磷酸和聚膦酸、聚磺酸盐)的血液促/抗凝血作用、白蛋白结合和白蛋白聚集、对聚合酶的抑制活性、细胞毒性和刺激巨噬细胞中的抗炎活性。设计了含有利巴韦林的单体,以适应具有二硫键交换触发药物释放的大分子前体药物的合成。所有情况下药物释放的动力学都很快,但聚合物的疏水性显著减缓了利巴韦林的释放。这项研究的结果提供了聚阴离子作为利巴韦林广谱抗病毒药物大分子前体药物的聚合物主链的全面视图。