Bartoli Flavia, Corradi Leonora, Hosseini Zohreh, Privitera Antonella, Zuena Martina, Kumbaric Alma, Graziani Valerio, Tortora Luca, Sodo Armida, Caneva Giulia
Institute of Heritage Science, National Research Council, ISPC-CNR, 00010 Rome, Italy.
Department of Science, University of Roma Tre, 00146 Rome, Italy.
Gels. 2024 Feb 6;10(2):132. doi: 10.3390/gels10020132.
The study explores the application of natural biocides (oregano essential oil and eugenol, directly applied in solutions or encapsulated within silica nanocapsules) for safeguarding stone cultural heritage from biodeterioration, using green algae ( sp.) and cyanobacteria ( sp.) as common pioneer biodeteriogens. Core-shell nanocontainers were built for a controlled release of microbicidal agents, a safe application of chemicals and a prolonged efficacy. The qualitative and quantitative evaluations of biocide efficiency at different doses were periodically performed in vitro, after six scheduled intervals of time (until 100 days). The release kinetics of composite biocide-embedding silica nanocapsules were characterized by the UV-Vis spectroscopy technique. Data showed both promising potential and some limitations. The comparative tests of different biocidal systems shed light on their variable efficacy against microorganisms, highlighting how encapsulation influences the release dynamics and the overall effectiveness. Both the essential oils showed a potential efficacy in protective antifouling coatings for stone artifacts. Ensuring compatibility with materials, understanding their differences in biocidal activity and their release rates becomes essential in tailoring gel, microemulsion or coating products for direct on-site application.
该研究探索了天然杀菌剂(牛至精油和丁香酚,直接应用于溶液中或封装在二氧化硅纳米胶囊内)在保护石质文化遗产免受生物劣化方面的应用,使用绿藻(属)和蓝细菌(属)作为常见的先锋生物劣化剂。构建了核壳纳米容器,用于控制杀菌剂的释放、安全使用化学品并延长其功效。在六个预定的时间间隔(直至100天)后,定期在体外对不同剂量杀菌剂的效率进行定性和定量评估。采用紫外可见光谱技术对复合杀菌剂包埋二氧化硅纳米胶囊的释放动力学进行了表征。数据显示了既有前景的潜力也有一些局限性。不同杀菌系统的对比试验揭示了它们对微生物的不同功效,突出了封装如何影响释放动力学和整体有效性。两种精油在石质文物的防护防污涂层中均显示出潜在功效。确保与材料的兼容性、了解它们在杀菌活性和释放速率方面的差异,对于定制直接现场应用的凝胶、微乳液或涂层产品至关重要。