Marassi Valentina, Casolari Sonia, Panzavolta Silvia, Bonvicini Francesca, Gentilomi Giovanna Angela, Giordani Stefano, Zattoni Andrea, Reschiglian Pierluigi, Roda Barbara
Department of Chemistry G. Ciamician, University of Bologna, 40126 Bologna, Italy.
byFlow srl, 40129 Bologna, Italy.
Antibiotics (Basel). 2022 Mar 8;11(3):358. doi: 10.3390/antibiotics11030358.
Advances in nanotechnology have opened up new horizons in nanomedicine through the synthesis of new composite nanomaterials able to tackle the growing drug resistance in bacterial strains. Among these, nanosilver antimicrobials sow promise for use in the treatment of bacterial infections. The use of polydopamine (PDA) as a biocompatible carrier for nanosilver is appealing; however, the synthesis and functionalization steps used to obtain Ag-PDA nanoparticles (NPs) are complex and require time-consuming cleanup processes. Post-synthesis treatment can also hinder the stability and applicability of the material, and dry, offline characterization is time-consuming and unrepresentative of real conditions. The optimization of Ag-PDA preparation and purification together with well-defined characterization are fundamental goals for the safe development of these new nanomaterials. In this paper, we show the use of field-flow fractionation with multi-angle light scattering and spectrophotometric detection to improve the synthesis and quality control of the production of Ag-PDA NPs. An ad hoc method was able to monitor particle growth in a TLC-like fashion; characterize the species obtained; and provide purified, isolated Ag-PDA nanoparticles, which proved to be biologically active as antibacterial agents, while achieving a short analysis time and being based on the use of green, cost-effective carriers such as water.
纳米技术的进步通过合成能够应对细菌菌株中日益增长的耐药性的新型复合纳米材料,为纳米医学开辟了新的视野。其中,纳米银抗菌剂有望用于治疗细菌感染。使用聚多巴胺(PDA)作为纳米银的生物相容性载体很有吸引力;然而,用于获得银-聚多巴胺纳米颗粒(NPs)的合成和功能化步骤很复杂,并且需要耗时的净化过程。合成后处理也会阻碍材料的稳定性和适用性,而且干燥的离线表征既耗时又不能代表实际情况。优化银-聚多巴胺的制备和纯化以及进行明确的表征是这些新型纳米材料安全开发的基本目标。在本文中,我们展示了使用带多角度光散射和分光光度检测的场流分级法来改进银-聚多巴胺纳米颗粒的合成和质量控制。一种专门的方法能够以类似薄层色谱的方式监测颗粒生长;表征所得物种;并提供纯化、分离的银-聚多巴胺纳米颗粒,这些纳米颗粒被证明作为抗菌剂具有生物活性,同时实现了较短的分析时间,并且基于使用水等绿色、经济高效的载体。