Department of Plant Sciences, Faculty of Biological Sciences, Quaid-i-Azam University, Islamabad, Pakistan.
Department of Computer Sciences, Charles Sturt University, Darlinghurst Campus, Sydney, New South Wales, Australia.
Microsc Res Tech. 2024 Sep;87(9):1999-2012. doi: 10.1002/jemt.24572. Epub 2024 Apr 16.
Green-synthesized metal oxide nanoparticles have garnered considerable attention due to their simple, sustainable, and eco-friendly attributes, coupled with their diverse applications in biomedicine and environmental context. The current study shows a sustainable approach for synthesizing molybdenum oxide nanoparticles (MoONPs) utilizing an extract from Anabaena sp. A-1. This novel approach marks a significant milestone as various spectral approaches were employed for characterization of the green-synthesized MoONPs. Ultraviolet-visible (UV-Vis) spectroscopic analysis revealed a surface plasmon resonance (SPR) peak of MoONPs at 538 nm. Fourier transform infrared (FTIR) spectral analysis facilitated the identification of functional groups responsible for both the stability and production of MoONPs. Scanning electron microscopy (SEM) was utilized revealing a rod shape morphology of the MoONPs. X-ray diffraction (XRD) analysis yielded a calculated crystal size of 31 nm, indicating the crystalline nature of MoONPs. Subsequently, biological assays were employed to ascertain the potential of the bioengineered MoONPs. The 2,2-diphenyl-1-picrylhydrazyl (DPPH) assay was used to quantify free radical scavenging activity, revealing an antioxidant capacity of 68.1% at 200 μg/mL. To evaluate antibacterial and antifungal efficacy, the disc diffusion method was employed across varying concentrations of MoONPs (6.25, 12.5, 25, 50, 100, 150, 200 μg/mL). Quantification of cytotoxicity was performed via a brine shrimp assay, yielding an IC50 value of 552.3 μg/mL, a metric of moderate cytotoxicity. To assess the biocompatibility of MoONPs, an antihemolytic assay was conducted, confirming their safety profile. Additionally, MoONPs exhibited non-toxic attributes in an insecticidal assay. Notably, in anti-inflammatory assay MoONPs showed an inactive nature towards the reactive oxygen species. In conclusion, these findings highlight the potential versatility of MoONPs in various biological applications, extending beyond their recognized anti-inflammatory and insecticidal properties. RESEARCH HIGHLIGHTS: This study marks an advancement in nanotechnology, exploring ways for MoONPs fabrication, representing a unique and unexplored research domain. Green-synthesized MoONPs using Anabaena sp. A-1 extract offers a sustainable and eco-friendly approach. Characterized by UV-Vis, FTIR, SEM, and XRD, MoONPs demonstrate rod-shaped morphology and crystalline nature. Bioengineered MoONPs exhibit versatility in biological applications, demonstrating notable antioxidant, antibacterial and antifungal efficacy, moderate cytotoxicity, biocompatibility, and insecticidal properties, emphasizing their multifaceted utility. The research findings highlight the potential utilization of MoONPs across a spectrum of biological applications, thereby suggesting their promising role in the realm of biomedicine and environmental context.
利用 Anabaena sp. A-1 提取物合成钼氧化物纳米粒子 (MoONPs) 的可持续方法。这种新方法是一个重要的里程碑,因为各种光谱方法被用于表征绿色合成的 MoONPs。紫外-可见 (UV-Vis) 光谱分析显示 MoONPs 的表面等离子体共振 (SPR) 峰在 538nm 处。傅里叶变换红外 (FTIR) 光谱分析有助于确定既稳定又生产 MoONPs 的功能基团。扫描电子显微镜 (SEM) 用于揭示 MoONPs 的棒状形态。X 射线衍射 (XRD) 分析得出计算出的 MoONPs 晶体尺寸为 31nm,表明 MoONPs 的晶体性质。随后,进行了生物测定以确定生物工程化的 MoONPs 的潜力。2,2-二苯基-1-苦基肼 (DPPH) 测定法用于量化自由基清除活性,在 200μg/mL 时显示出 68.1%的抗氧化能力。为了评估抗菌和抗真菌功效,使用圆盘扩散法在不同浓度的 MoONPs(6.25、12.5、25、50、100、150、200μg/mL)上进行了评估。通过盐水虾测定法进行细胞毒性的定量,得出 IC50 值为 552.3μg/mL,这是中度细胞毒性的指标。为了评估 MoONPs 的生物相容性,进行了抗溶血测定,证实了其安全性。此外,MoONPs 在杀虫测定中表现出无毒特性。值得注意的是,在抗炎测定中,MoONPs 对活性氧表现出非活性。总之,这些发现强调了 MoONPs 在各种生物应用中的多功能性,超出了其公认的抗炎和杀虫特性。研究亮点:这项研究标志着纳米技术的进步,探索了 MoONPs 制造的方法,代表了一个独特的、尚未探索的研究领域。利用 Anabaena sp. A-1 提取物合成的绿色 MoONPs 提供了一种可持续和环保的方法。通过 UV-Vis、FTIR、SEM 和 XRD 对 MoONPs 进行了表征,MoONPs 表现出棒状形态和晶体性质。生物工程化的 MoONPs 在生物应用中表现出多功能性,表现出显著的抗氧化、抗菌和抗真菌功效、中等细胞毒性、生物相容性和杀虫特性,强调了其多方面的用途。研究结果强调了 MoONPs 在一系列生物应用中的潜在应用,从而表明它们在生物医学和环境背景下具有广阔的应用前景。