Plant Extracts Mediated Metal-Based Nanoparticles: Synthesis and Biological Applications

Author:

Adeyemi Jerry O.ORCID,Oriola Ayodeji O.ORCID,Onwudiwe Damian C.ORCID,Oyedeji Adebola O.ORCID

Abstract

The vastness of metal-based nanoparticles has continued to arouse much research interest, which has led to the extensive search and discovery of new materials with varying compositions, synthetic methods, and applications. Depending on applications, many synthetic methods have been used to prepare these materials, which have found applications in different areas, including biology. However, the prominent nature of the associated toxicity and environmental concerns involved in most of these conventional methods have limited their continuous usage due to the desire for more clean, reliable, eco-friendly, and biologically appropriate approaches. Plant-mediated synthetic approaches for metal nanoparticles have emerged to circumvent the often-associated disadvantages with the conventional synthetic routes, using bioresources that act as a scaffold by effectively reducing and stabilizing these materials, whilst making them biocompatible for biological cells. This capacity by plants to intrinsically utilize their organic processes to reorganize inorganic metal ions into nanoparticles has thus led to extensive studies into this area of biochemical synthesis and analysis. In this review, we examined the use of several plant extracts as a mediating agent for the synthesis of different metal-based nanoparticles (MNPs). Furthermore, the associated biological properties, which have been suggested to emanate from the influence of the diverse metabolites found in these plants, were also reviewed.

Publisher

MDPI AG

Subject

Molecular Biology,Biochemistry

Reference194 articles.

1. Green synthesis of copper oxide nanoparticles using gum karaya as a biotemplate and their antibacterial application

2. Applications of nanotechnology in renewable energies—A comprehensive overview and understanding

3. Nanotechnology in Communication Engineering: Issues, Applications and Future Possibilities;Ahmed;World Sci. News,2017

4. Nanotechnology for Environmental Remediation;Imran;Res. J. Pharm. Biol. Chem. Sci.,2014

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