Roy Arpita, Datta Shreeja, Luthra Ritika, Khan Muhammad Arshad, Gacem Amel, Hasan Mohd Abul, Yadav Krishna Kumar, Ahn Yongtae, Jeon Byong-Hun
Department of Biotechnology, School of Engineering and Technology, Sharda University, Greater Noida, India.
Delhi Technological University, Delhi, India.
Front Chem. 2022 Sep 26;10:994724. doi: 10.3389/fchem.2022.994724. eCollection 2022.
Synthesis of metalloid nanoparticles using biological-based fabrication has become an efficient alternative surpassing the existing physical and chemical approaches because there is a need for developing safer, more reliable, cleaner, and more eco-friendly methods for their preparation. Over the last few years, the biosynthesis of metalloid nanoparticles using biological materials has received increased attention due to its pharmaceutical, biomedical, and environmental applications. Biosynthesis using bacterial, fungal, and plant agents has appeared as a faster developing domain in bio-based nanotechnology globally along with other biological entities, thus posing as an option for conventional physical as well as chemical methods. These agents can efficiently produce environment-friendly nanoparticles with the desired composition, morphology (shape as well as size), and stability, along with homogeneity. Besides this, metalloid nanoparticles possess various applications like antibacterial by damaging bacterial cell membranes, anticancer due to damaging tumour sites, targeted drug delivery, drug testing, and diagnostic roles. This review summarizes the various studies associated with the biosynthesis of metalloid particles, namely, tellurium, arsenic, silicon, boron, and antimony, along with their therapeutic, pharmaceutical and environmental applications.
利用基于生物的方法制备类金属纳米颗粒已成为一种有效的替代方法,超越了现有的物理和化学方法,因为需要开发更安全、更可靠、更清洁和更环保的制备方法。在过去几年中,利用生物材料生物合成类金属纳米颗粒因其在制药、生物医学和环境领域的应用而受到越来越多的关注。与其他生物实体一样,利用细菌、真菌和植物制剂进行生物合成已成为全球生物基纳米技术中一个快速发展的领域,因此成为传统物理和化学方法的一种选择。这些制剂可以高效地生产出具有所需组成、形态(形状和尺寸)、稳定性以及均匀性的环保型纳米颗粒。除此之外,类金属纳米颗粒具有多种应用,如通过破坏细菌细胞膜实现抗菌、通过破坏肿瘤部位实现抗癌、靶向药物递送、药物测试以及诊断作用。本综述总结了与类金属颗粒(即碲、砷、硅、硼和锑)生物合成相关的各种研究,以及它们的治疗、制药和环境应用。