Plohl Olivija, Fric Katja, Filipić Arijana, Kogovšek Polona, Tušek Žnidarič Magda, Zemljič Lidija Fras
Laboratory for Characterization and Processing of Polymers, Faculty of Mechanical Engineering, University of Maribor, Smetanova ulica 17, 2000 Maribor, Slovenia.
Department of Biotechnology and Systems Biology, National Institute of Biology, Večna pot 111, 1000 Ljubljana, Slovenia.
Polymers (Basel). 2022 Aug 17;14(16):3357. doi: 10.3390/polym14163357.
The outbreak of the worrisome coronavirus disease in 2019 has caused great concern among the global public, especially regarding the need for personal protective equipment with applied antiviral agents to reduce the spread and transmission of the virus. Thus, in our research, chitosan-based bioactive polymers as potential antiviral agents were first evaluated as colloidal macromolecular solutions by elemental analysis and charge. Three different types of low and high molecular weight chitosan (LMW Ch, HMW Ch) and a LMW Ch derivative, i.e., quaternary chitosan (quart-LMW Ch), were used. To explore their antiviral activity for subsequent use in the form of coatings, the macromolecular Chs dispersions were incubated with the model virus phi6 (surrogate for SARS-CoV-2), and the success of virus inactivation was determined. Inactivation of phi6 with some chitosan-based compounds was very successful (>6 log), and the mechanisms behind this were explored. The changes in viral morphology after incubation were observed and the changes in infrared bands position were determined. In addition, dynamic and electrophoretic light scattering studies were performed to better understand the interaction between Chs and phi6. The results allowed us to better understand the antiviral mode of action of Chs agents as a function of their physicochemical properties.
2019年令人担忧的冠状病毒病爆发引起了全球公众的高度关注,尤其是对带有抗病毒剂的个人防护装备的需求,以减少病毒的传播。因此,在我们的研究中,基于壳聚糖的生物活性聚合物作为潜在的抗病毒剂,首先通过元素分析和电荷作为胶体大分子溶液进行评估。使用了三种不同类型的低分子量和高分子量壳聚糖(LMW Ch、HMW Ch)以及一种LMW Ch衍生物,即季铵化壳聚糖(quart-LMW Ch)。为了探索它们作为涂层后续使用的抗病毒活性,将大分子壳聚糖分散体与模型病毒phi6(SARS-CoV-2的替代物)孵育,并确定病毒灭活的成功率。一些基于壳聚糖的化合物对phi6的灭活非常成功(>6个对数),并探索了其背后的机制。观察了孵育后病毒形态的变化,并确定了红外波段位置的变化。此外,进行了动态和电泳光散射研究,以更好地理解壳聚糖与phi6之间的相互作用。这些结果使我们能够更好地理解壳聚糖剂作为其物理化学性质函数的抗病毒作用模式。