Synthesis, Characterization and Antibacterial Efficacy of Catharanthus roseus and Ocimum tenuiflorum-Mediated Silver Nanoparticles: Phytonanotechnology in Disease Management

Author:

Balkrishna Acharya1,Thakur Naveen2,Patial Bhavana2,Sharma Saurabh3,Kumar Ashwani1ORCID,Arya Vedpriya14,Amarowicz Ryszard5ORCID

Affiliation:

1. Patanjali Herbal Research Department, Patanjali Research Institute, Haridwar 249405, India

2. Department of Physics, Career Point University, Hamirpur 176041, India

3. Department of Chemistry, Career Point University, Hamirpur 176041, India

4. Centre of Excellence, Patanjali Ayurved Hospital, Haridwar 249405, India

5. Institute of Animal Reproduction and Food Research, Polish Academy of Sciences, 10-748 Olsztyn, Poland

Abstract

Nanotechnology is an emerging multidisciplinary field that has the potential to offer solutions to pharmaceutical challenges starting from drug delivery to therapeutic applications. The plant-mediated method is eco-friendly and the most inexpensive of the various techniques used to synthesize nanoparticles (NPs). In this study, silver (Ag) NPs have been successfully synthesized using leaf extract of Catharanthus roseus and Ocimum tenuiflorum. X-ray diffraction revealed an average crystalline size of 19.96 and 21.42 nm for C. roseus and O. tenuiflorum-mediated Ag NPs, respectively. Further, shape, size, and elemental composition were analyzed using a scanning electron microscope, transmission electron microscope (TEM), and energy-dispersive X-ray spectral technique. TEM study revealed spherical/spheroidal-shaped Ag NPs were formed between 10–48 nm with C. roseus and 17–55 nm with O. tenuiflorum. Both synthesized Ag NPs inhibited Escherichia coli and Bacillus subtilis, where the effect was more prominent against E. coli (MIC 3.90 ± 0 µg/mL) with O. tenuiflorum Ag NPs. Mechanistic insights of antibacterial activity were also highlighted, and the activity might be attributed to the diverse mode of action of surface functionalized phytoconstituents and NPs.

Funder

Ministry of AYUSH

Publisher

MDPI AG

Subject

Process Chemistry and Technology,Chemical Engineering (miscellaneous),Bioengineering

Reference82 articles.

1. Green synthesis of silver nanoparticles;Rajoriya;Int. J. Biol. Sci.,2017

2. Predicting the magnetism, structural, thermodynamic and electronic properties of new co-based Heuslers: First principle perspective;Kumar;Philos. Mag.,2020

3. Bioinspired synthesis of silver nanoparticles;Parashar;Dig. J. Nanomater. Biostruct.,2009

4. Synthesis of silver nanoparticles from medicinal plants and its biological application: A review;Roy;Res. Rev. BioSci.,2017

5. Physiochemical charge stabilization of silver nanoparticles and its antibacterial applications;Vanitha;Chem. Phys. Lett.,2017

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