Department of Chemistry, K. N. Toosi University of Technology, Tehran, Iran.
Mycobacteriology & Pulmonary Research Department, Pasteur Institute of Iran, Tehran, Iran; Microbiology Research Center, Pasteur Institute of Iran, Tehran, Iran; Student Research Committee, Pasteur Institute of Iran, Tehran, Iran.
J Infect Public Health. 2024 Oct;17(10):102536. doi: 10.1016/j.jiph.2024.102536. Epub 2024 Aug 30.
The advancement of safe, eco-friendly, and cost-efficient techniques for nanoparticle production is a crucial objective in nanotechnology. Among the various sustainable methods, the biological synthesis of nanoparticles utilizing fungi, bacteria, yeasts, and plants stands out. Fungi, in particular, are well suited for this task because of their capacity to secrete numerous enzymes and streamline subsequent processes. Using fungal strains for nanoparticle biosynthesis is both technologically appealing and economically viable. The utilization of fungal strains for nanoparticle biosynthesis is both technologically appealing and economically viable. Fungi have long been acknowledged as adept natural engineers capable of creating a wide array of nanoparticles with distinct properties and applications. This article provides an overview of fungus-mediated nanoparticle development, shedding light on the underlying mechanisms of their synthesis and the factors influencing their characteristics. Furthermore, the potential of fungus-mediated nanoparticles in the industrial domain has been explored. These findings emphasize the importance of different fungal species in nanoparticle synthesis, as well as the biocompatibility and environmental friendliness of fungus-mediated nanoparticles. By underscoring the essential role of fungi in connecting natural knowledge with innovative industrial applications, recent progress in enhancing nanoparticle production and optimizing synthesis conditions through fungi has been examined to underscore the feasibility of extensive industrial nanoparticle utilization via fungi.
安全、环保且高效的纳米颗粒生产技术的发展是纳米技术的一个关键目标。在各种可持续方法中,利用真菌、细菌、酵母和植物来生物合成纳米颗粒尤为突出。真菌特别适合这项任务,因为它们能够分泌多种酶,并简化后续的过程。利用真菌菌株进行纳米颗粒的生物合成在技术上具有吸引力,在经济上也是可行的。利用真菌菌株进行纳米颗粒的生物合成在技术上具有吸引力,在经济上也是可行的。真菌长期以来一直被认为是擅长的天然工程师,能够用不同的特性和应用来创造各种各样的纳米颗粒。本文概述了真菌介导的纳米颗粒的发展,揭示了它们合成的潜在机制以及影响其特性的因素。此外,还探讨了真菌介导的纳米颗粒在工业领域的潜在应用。这些发现强调了不同真菌物种在纳米颗粒合成中的重要性,以及真菌介导的纳米颗粒的生物相容性和环境友好性。通过强调真菌在将自然知识与创新的工业应用联系起来方面的重要作用,本文研究了通过真菌来提高纳米颗粒生产和优化合成条件的最新进展,以强调通过真菌广泛应用工业纳米颗粒的可行性。