Rozhin Artem, Batasheva Svetlana, Iskuzhina Liliya, Gomzikova Marina, Kryuchkova Marina
Institute of Fundamental Medicine and Biology, Kazan Federal University, Kreml Str. 18, 420008 Kazan, Russia.
Institute for Regenerative Medicine, Sechenov University, Trubetskaya Str. 8/2, 119992 Moscow, Russia.
Int J Mol Sci. 2024 Nov 21;25(23):12494. doi: 10.3390/ijms252312494.
The development of multidrug resistance by pathogenic bacteria and yeast is a significant medical problem that needs to be addressed. One possible answer could be the combined use of antibiotics and silver nanoparticles, which have different mechanisms of antimicrobial action. In the same way, these nanoparticles can be combined with antifungal agents. Biogenic silver nanoparticles synthesized using environmentally friendly biosynthesis technology using extracts of biologically active plants are an effective nanomaterial that needs to be comprehensively investigated for implementation into medical practice. In this study, the synergistic effects arising from their combined use with antibiotics and fungicides against various bacteria and yeasts were studied. The following methods were used: disco-diffusion analysis and construction of plankton culture growth curves. The synergistic effect of silver nanoparticles and antibiotics (fungicides) has been determined. Effective concentrations of substances were established, recommendations for the studied pathogenic species were presented, and the effect of destruction of the bacterial membrane was illustrated. The most significant synergistic effect was manifested in pathogenic candida and brewer's yeast.
病原菌和酵母菌多重耐药性的发展是一个需要解决的重大医学问题。一个可能的解决办法是联合使用抗生素和银纳米颗粒,它们具有不同的抗菌作用机制。同样,这些纳米颗粒可以与抗真菌剂联合使用。利用具有生物活性的植物提取物通过环境友好的生物合成技术合成的生物源银纳米颗粒是一种有效的纳米材料,需要对其在医学实践中的应用进行全面研究。在本研究中,研究了它们与抗生素和杀菌剂联合使用对各种细菌和酵母菌产生的协同效应。采用了以下方法:纸片扩散分析和浮游培养生长曲线的构建。确定了银纳米颗粒与抗生素(杀菌剂)的协同效应。确定了物质的有效浓度,给出了针对所研究病原菌的建议,并阐明了对细菌膜的破坏作用。最显著的协同效应在致病性念珠菌和酿酒酵母中表现出来。