Alsayed Doaa K, Elhawary Seham S, El Raey Mohamed A, Ahmed Gihan F, Marrez Diaa A, Essa Ahmed F, Alshehri Saad A, Rabeh Mohamed A, Elmotayam Amira K
Department of Pharmacognosy, National Nutritional Institute, Kasr El-Aini, Cairo, Egypt.
Department of Pharmacognosy, Faculty of pharmacy, Cairo University, Kasr El-Aini, Cairo, Egypt.
Sci Rep. 2025 Aug 6;15(1):28738. doi: 10.1038/s41598-025-13925-0.
The growing challenge of drug-resistant pathogens has forced the urgent need for natural and sustainable antimicrobial alternatives. This research explores the green chemistry-based synthesis of zinc oxide quantum dots (ZnO-QDs) employing the ethanolic root extract of Brassica rapa (L.) to assist their formation and stabilization. Characterization of ZnO-QDs confirmed their hexagonal crystalline structure with a nanoscale size (0.8-2.6 nm) and their good stability. GC/MS assay identified β-phenylethyl isothiocyanate and hydroquinone as the main antimicrobial compounds in the essential oil, while LC-ESI-TOF-MS profiling pinpointed the existence of glucosinolates, flavonoids, and phenolic acids as potential active compounds contributing to nanoparticle formation and antimicrobial potential. The combination of B. rapa essential oil and ZnO-QDs exhibited the strongest antibacterial and antifungal activity among the all investigated samples, showing the highest inhibition against Listeria monocytogenes (30.5 mm), Aspergillus niger (20.5 mm), and Fusarium verticillioides (18.2 mm). Molecular docking revealed powerful binding affinities of key phytochemicals to fungal sterol demethylase CYP51B and bacterial DNA gyrase 2, reinforcing their antimicrobial activity. The study's outcomes reveal that B. rapa-derived ZnO-QDs could be a novel, eco-friendly antimicrobial agent for controlling food spoilage bacteria and mycotoxigenic fungi in food products. Future research should focus on in-vivo efficacy and biocompatibility to fully utilize their potential in food preservation, the pharmaceutical industry, and biomedicine.
耐药病原体带来的挑战日益严峻,迫切需要天然且可持续的抗菌替代品。本研究探索了基于绿色化学法合成氧化锌量子点(ZnO-QDs),采用芜菁(Brassica rapa (L.))的乙醇根提取物来辅助其形成和稳定。对ZnO-QDs的表征证实了它们具有六方晶体结构,纳米级尺寸(0.8 - 2.6纳米)且稳定性良好。气相色谱/质谱分析确定β-苯乙基异硫氰酸酯和对苯二酚为精油中的主要抗菌化合物,而液相色谱-电喷雾电离-飞行时间质谱分析则指出存在硫代葡萄糖苷、黄酮类化合物和酚酸作为有助于纳米颗粒形成和抗菌潜力的潜在活性化合物。芜菁精油和ZnO-QDs的组合在所有研究样品中表现出最强的抗菌和抗真菌活性,对单核细胞增生李斯特菌(30.5毫米)、黑曲霉(20.5毫米)和串珠镰刀菌(18.2毫米)显示出最高的抑制作用。分子对接揭示了关键植物化学物质与真菌甾醇脱甲基酶CYP51B和细菌DNA回旋酶2具有强大的结合亲和力,增强了它们的抗菌活性。该研究结果表明,芜菁衍生的ZnO-QDs可能是一种新型的、环保的抗菌剂,用于控制食品中的腐败细菌和产毒真菌。未来的研究应集中在体内疗效和生物相容性上,以充分发挥其在食品保鲜、制药行业和生物医学中的潜力。