Bioorganic macromolecules crowned zirconia nanoparticles: protein-rich fish mucus inspired synthesis and their antibacterial efficacy assessment

Author:

Subramanian Ramasamy1,Chinnadurai Govindasamy2,Suresh Raman3,Santhamoorthy Madhappan45ORCID,Periyasami Govindasami6ORCID,Karthikeyan Perumal7,Mohan Anandhu8,Vy Phan Thi Tuong910ORCID

Affiliation:

1. PG and Research Department of Chemistry , Sun Arts and Science College , Tiruvannamalai 606755 , Tamil Nadu , India

2. Department of Chemistry , Sacred Heart Arts and Science College , Villupuram 605651 , Tamil Nadu , India

3. Department of Chemistry , Government Polytechnic College , Tiruvannamalai 606705 , Tamil Nadu , India

4. School of Chemical Engineering , Yeungnam University , Gyeongsan 38544 , Republic of Korea

5. Department of Physiology, Saveetha Dental College and Hospitals, Saveetha Institute of Medical and Technical Science (SIMATS) , Saveetha University , Chennai 600077 , India

6. Department of Chemistry, College of Science , King Saud University , P.O. Box 2455 , Riyadh 11451 , Saudi Arabia

7. Department of Chemistry and Biochemistry , Ohio State University , 170A CBEC, 151 Woodruff Avenue , Columbus , OH 43210 , USA

8. Department of Nano Science and Technology Convergence, General Graduate School , Gachon University , 1342 Seongnam-Daero, Sujeong-Gu , Seongnam-Si , Gyeonggi-Do 13120 , Republic of Korea

9. Center for Advanced Chemistry, Institute of Research and Development , Duy Tan University , 03 Quang Trung, Hai Chau , Danang 550000 , Vietnam

10. Faculty of Environmental and Chemical Engineering , Duy Tan University , 03 Quang Trung, Hai Chau , Danang 550000 , Vietnam

Abstract

Abstract The bioinorganic material, such as fish mucus macromolecules crowned zirconia nanoparticles (ZrO2 NPs) was synthesized via green methodology and has been investigated their efficacy on Gram-positive and Gram-negative bacterial strains that inhabit the oral cavity, gastrointestinal tracts, and colon. The environmentally benign synthesis methodology was used for fabricating biofunctionalized ZrO2 NPs with three different concentrations of C. striatus epidermal mucus. Spherical morphology with a size ranging from 7 to 25 nm of synthesized granular was identified by FESEM analysis. The powder XRD diffractions of synthesized ZrO2 NPs were confirmed with the previously reported standard literature. Upon being subjected to a primary microbial study, the synthesized ZrO2 NPs were shown to exhibit antibacterial activity against the tested bacterial pathogens. However, another Gram-negative bacterial stain, Proteus vulgaris shows almost similar efficiency to standard antibacterial drugs. Interestingly, all Gram-positive bacterial strains show a high zone of inhibition at higher concentrations of synthesized ZrO2 NPs. In general, the antibacterial activity study proved that the synthesized biofunctionalized ZrO2 NPs may be applied as an efficient health care beneficial material.

Funder

King Saud University

Publisher

Walter de Gruyter GmbH

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