Hashem Amr H, Saied Ebrahim, Badr Bahaa M, Dora Mohamed Soliman, Diab Mahmoud A, Abdelaziz Amer Morsy, Elkady Fathy M, Ali Mohamed Abdelrahman, Issa Nasser Ibrahim, Hamdy Ziad A, Nafea Mohamed E, Khalifa Ahmed Nageh, Adel Albraa, Hasib Abdulrahman, Hawela Ahmed Mostafa, El-Gazzar Menna M, Nouh Mustafa A, Nahool Ahmed Abdelhay, Attia Mohamed S
Botany and Microbiology Department, Faculty of Science, Al-Azhar University, 11884 Nasr City, Cairo, Egypt.
Department of Basic and Clinical Medical Sciences, Faculty of Dentistry, Zarqa University, Zarqa, Jordan.
Arch Microbiol. 2025 Feb 1;207(3):50. doi: 10.1007/s00203-025-04237-y.
Trimetallic nanoparticles (TMNPs) have emerged as a pivotal area of research due to their unique properties and diverse applications across medicine, agriculture, and environmental sciences. This review provides several novel contributions that distinguish it from existing literature on trimetallic nanoparticles (TMNPs). Firstly, it offers a focused exploration of TMNPs, specifically addressing their unique properties and applications, which have been less examined compared to other multimetallic nanoparticles. This targeted analysis fills a significant gap in current research. Secondly, the review emphasizes innovative biosynthesis methods utilizing microorganisms and plant extracts, positioning these green synthesis approaches as environmentally friendly alternatives to traditional chemical methods. This focus aligns with the increasing demand for sustainable practices in nanotechnology. Furthermore, the review integrates discussions on both medical and agricultural applications of TMNPs, highlighting their multifunctional potential across diverse fields. This comprehensive perspective enhances our understanding of how TMNPs can address various challenges. Additionally, the review explores the synergistic effects among the different metals in TMNPs, providing insights into how these interactions can be harnessed to optimize their properties for specific applications. Such discussions are often overlooked in existing studies. Moreover, this review identifies critical research gaps and challenges within the field, outlining future directions that encourage further investigation and innovation in TMNP development. By doing so, it proactively contributes to advancing the field. Finally, the review advocates for interdisciplinary collaboration among material scientists, biologists, and environmental scientists, emphasizing the importance of diverse expertise in enhancing the research and application of TMNPs.
由于其独特的性质以及在医学、农业和环境科学中的广泛应用,三金属纳米颗粒(TMNPs)已成为一个关键的研究领域。这篇综述做出了几项新颖的贡献,使其有别于现有的关于三金属纳米颗粒(TMNPs)的文献。首先,它对TMNPs进行了有针对性的探索,特别探讨了它们的独特性质和应用,与其他多金属纳米颗粒相比,这些方面的研究较少。这种有针对性的分析填补了当前研究中的一个重大空白。其次,该综述强调了利用微生物和植物提取物的创新生物合成方法,将这些绿色合成方法定位为传统化学方法的环保替代方案。这一重点符合纳米技术对可持续实践日益增长的需求。此外,该综述整合了关于TMNPs在医学和农业应用方面的讨论,突出了它们在不同领域的多功能潜力。这种全面的视角增强了我们对TMNPs如何应对各种挑战的理解。此外,该综述探讨了TMNPs中不同金属之间的协同效应,深入了解了如何利用这些相互作用来优化其性能以用于特定应用。此类讨论在现有研究中常常被忽视。而且,这篇综述确定了该领域内关键的研究空白和挑战,概述了未来的方向,鼓励在TMNP开发方面进行进一步的研究和创新。通过这样做,它积极推动了该领域的发展。最后,该综述倡导材料科学家、生物学家和环境科学家之间的跨学科合作,强调不同专业知识在加强TMNPs研究和应用方面的重要性。