Zhang Jing, Si Guoguo, Zou Jun, Fan Ruiliang, Guo Ailing, Wei Xuetuan
Key Laboratory of Environment Correlative Dietology (Ministry of Education), College of Food Science and Technology, Huazhong Agricultural Univ., Wuhan, 430070, China.
State Key Laboratory of Agricultural Microbiology, Huazhong Agricultural Univ., Wuhan, 430070, China.
J Food Sci. 2017 Aug;82(8):1861-1866. doi: 10.1111/1750-3841.13811. Epub 2017 Jul 20.
Due to their potent antimicrobial activity, silver nanoparticles (AgNPs) synthesized by biomass might be promising in food preservation, whereas effects of AgNPs on Penicillium italicum-induced rot of Citrus fruits have not been investigated. In this study, a novel AgNPs biosynthesis method was developed based on Fatsia japonica leaf extracts. It was revealed that concentrations of leaf extracts, AgNO and NaCl affected AgNPs yields and particle sizes obviously. Under the optimized conditions (8 mg/mL extracts, 2 mM AgNO and 1 mM NaCl), AgNPs, synthesized within 80 min, showed potent preservative effect against P. italicum-induced rot of Citrus fruits. Furthermore, inhibition test and TEM analysis indicated that as-synthesized AgNPs caused cell deformation, cytoplasmic leakage, and thereupon cell death of P. italicum. Moreover, AgNPs had significant antibacterial activities against Escherichia coli and Staphylococcus aureus, which might be beneficial for Citrus fruits preservation. Altogether this study develops an efficient AgNPs synthesis method and a novel preservation method for Citrus fruits.
由于其强大的抗菌活性,通过生物质合成的银纳米颗粒(AgNPs)在食品保鲜方面可能具有前景,而AgNPs对意大利青霉引起的柑橘类水果腐烂的影响尚未得到研究。在本研究中,基于八角金盘叶提取物开发了一种新型的AgNPs生物合成方法。结果表明,叶提取物、AgNO₃和NaCl的浓度对AgNPs的产量和粒径有明显影响。在优化条件(8 mg/mL提取物、2 mM AgNO₃和1 mM NaCl)下,80分钟内合成的AgNPs对意大利青霉引起的柑橘类水果腐烂显示出强大的保鲜效果。此外,抑制试验和透射电镜分析表明,合成的AgNPs导致细胞变形、细胞质泄漏,进而导致意大利青霉细胞死亡。此外,AgNPs对大肠杆菌和金黄色葡萄球菌具有显著的抗菌活性,这可能有利于柑橘类水果的保鲜。总之,本研究开发了一种高效的AgNPs合成方法和一种新型的柑橘类水果保鲜方法。