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Abstrait

Green Synthesized Gold Nanoparticles using Plant Extracts as Promising Prospect for Cancer Therapy: A Recent Review

Abire Orebo Temesgen*, TS Arul Jeevan

Green synthesis methods are gaining significance as promising routes for the sustainable preparation of nanoparticles, offering reduced toxicity towards living organisms and therefore the environment. Among nanoparticles, gold Nano Particles (AuNPs) attract much attention thanks to their usability and high performance in imaging techniques. The wide availability of biological precursors employed in plant based synthesized AuNPs allows for the event of large-scale production during a greener manner. Gold Nano Particles (AuNPs) are widely explored and are well-known for his or her medical applications due to their large volume specific surface areas with high diverse surface activities than bulk gold. These properties have made Au-NPs of great importance within the event of fantastic promising prospect for biomedical and environmental applications. In impression of this, biosynthesized NPs are gaining more attention due to bioactive plant secondary metabolites help in green synthesis and also due to their unique biological applications. This review, therefore, focuses on a simplistic, eco-friendly, reliable, and cost effective green synthesized AuNPs as a promising agent for cancer therapy. By consideration of preparation methods, green synthesis is one in every of the foremost promising approaches for compensation of the constraints of those physical and chemical methods. Au-NPs have many applications in biomedical field. Improving delivery of anticancer agents to tumors using NPs is one altogether the foremost promising research areas within the sector of nanotechnology? As observed during this recent review generally, to provide novel drug, the green synthesis approach of gold NPs indicates as an honest promising prospect on cancer therapy.

Avertissement: Ce résumé a été traduit à l'aide d'outils d'intelligence artificielle et n'a pas encore été examiné ni vérifié