Abdel-Rahman Mohammed Ali, Alshallash Khalid S, Eid Ahmed M, Hassan Saad El-Din, Salih Mutaz, Hamza Mohammed F, Fouda Amr
Botany and Microbiology Department, Faculty of Science, Al-Azhar University, Nasr City, Cairo 11884, Egypt.
Department of Biology, College of Science, Imam Mohammad Ibn Saud Islamic University (IMSIU), Riyadh 11623, Saudi Arabia.
Pharmaceuticals (Basel). 2024 Feb 28;17(3):317. doi: 10.3390/ph17030317.
Herein, the prospective applications of green fabricated silver nanoparticles (Ag-NPs) within the biomedical field were investigated. The leaf aqueous extract of L., a safe, cheap, and green method, was used to fabricate Ag-NPs. The maximum plasmon resonance of synthesized NPs has appeared at 420 nm. The various biomolecules present in the plant extract to assemble spherical Ag-NPs with sizes of 5-40 nm were analyzed using Fourier transform infrared and transmission electron microscopy. The Ag was the major content of the formed Ag-NPs with an atomic percent of 54.95% and weight percent of 65.86%, as indicated by EDX. The crystallographic structure of synthesized NPs was confirmed by the diffraction of the X-ray. The dynamic light scattering exhibits the homogeneity and mono-dispersity nature with a polydispersity index of 0.37 in the colloidal fluid and a zeta potential value of -36 mV. The synthesized Ag-NPs exhibited promising antimicrobial efficacy toward various prokaryotic and eukaryotic pathogenic microorganisms with low MIC values of 12.5 µg mL and 6.25 µg mL, respectively. Additionally, the -formed Ag-NPs showed optimistic antioxidant activity assessed by DPPH and HO assay methods with the highest scavenging percentages of 88.5 ± 2.3% and 76.5 ± 1.7%, respectively, at a concentration of 200 µg mL. Finally, the biosynthesized Ag-NPs showed high antiviral properties toward the hepatitis A virus and Cox-B4 with inhibition percentages of 79.16 ± 0.5% and 73.59 ± 0.8%, respectively. Overall, additional research is essential to explore the Ag-NP-based aqueous extract of for human health. In the current investigation the use of synthesized Ag-NPs as antimicrobial, antioxidant, and antiviral agents to protect against pathogenic microbes, degenerative diseases caused by various oxidative stresses, and deadly viruses is recommended.
在此,研究了绿色制备的银纳米颗粒(Ag-NPs)在生物医学领域的潜在应用。使用L.的叶水提取物,这是一种安全、廉价且绿色的方法来制备Ag-NPs。合成的纳米颗粒的最大等离子体共振出现在420nm处。使用傅里叶变换红外光谱和透射电子显微镜分析了植物提取物中存在的各种生物分子,以组装尺寸为5-40nm的球形Ag-NPs。如能谱分析所示,Ag是形成的Ag-NPs的主要成分,原子百分比为54.95%,重量百分比为65.86%。通过X射线衍射证实了合成纳米颗粒的晶体结构。动态光散射显示在胶体溶液中具有均匀性和单分散性,多分散指数为0.37,zeta电位值为-36mV。合成的Ag-NPs对各种原核和真核致病微生物表现出有前景的抗菌功效,最低抑菌浓度(MIC)值分别低至12.5μg/mL和6.25μg/mL。此外,通过DPPH和HO测定法评估,形成的Ag-NPs在浓度为200μg/mL时显示出乐观的抗氧化活性,最高清除率分别为88.5±2.3%和76.5±1.7%。最后,生物合成的Ag-NPs对甲型肝炎病毒和柯萨奇B4病毒表现出高抗病毒特性,抑制率分别为79.16±0.5%和73.59±0.8%。总体而言,有必要进行更多研究以探索基于Ag-NP的L.水提取物对人类健康的作用。在当前研究中,建议使用合成的Ag-NPs作为抗菌、抗氧化和抗病毒剂,以抵御致病微生物、由各种氧化应激引起的退行性疾病和致命病毒。