Silver nanoparticles synthesized from the seaweed Sargassum polycystum and screening for their biological potential

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Rajasekar Thiurunavukkarau
Sabarika Shanmugam
Kumaran Subramanian
Priyadarshini Pandi
Gangatharan Muralitharan
Maryshamya Arokiarajan
Karthika Kasinathan
Anbarasu Sivaraj
Revathy Kalyanasundaram
Suliman Yousef AlOmar
Velmurugan Shanmugam
机构
[1] Col. Dr. Jeppiaar Research Park,Centre for Drug Discovery and Development
[2] Sathyabama Institute of Science and Technology Jeppiaar Nagar,Departmentof Microbiology, Centre of Excellence in Life Sciences
[3] Bharathidasan University,Department of Biotechnology
[4] Mohamed Sathak College of Arts and Science,Department of Zoology, College of Science
[5] Kind Saud University,undefined
[6] Madda Walabu University,undefined
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World-wide antimicrobial resistant is biggest threat in global health. It requires the urgent need of multisectoral action for the scientific community to achieve the sustainable development Goals. Due to their antimicrobial properties, silver nanoparticles are potential activates to pathogens, which explains their potential for multiple applications in various fields. In the present studies, we evaluate the antimicrobial properties of a Sargassum polycystum algal extract, an unrivaled green synthetic method for producing -defined shaped seaweed silver nanoparticles. To confirm their structure and size, some characterization techniques are used, such as Absorption spectrophotometer (UV–VIS), Fourier transforms infrared spectroscopy (FTIR), Scanning electron Microscope (SEM), Transmission electron microscopy (TEM) and X-Ray diffraction (XRD). Evaluate the antibacterial and anti-mycobacterial activity using silver nanoparticles. The toxicity study of this silver nanoparticle has been done with the help of zebrafish larva. The biological nanoparticle having good antimicrobial activity against Staphylococcus aureus, Micrococcus luteus, Pseudomonas fluorescens and Candida albicans and also it shows potent activity against MTB H37Rv, SHRE sensitive MTB Rifampicin resistant MTB around 98%. Seaweed nanoparticles had lower toxicity for the survival of the fish larvae. In comparison, other dosages will arrest the cell cycle and leads to death. The present finding revealed that these seaweeds nanoparticles have potential anti-mycobacterial activity against pathogens at low concentrations. This makes them a potent source of antibacterial and anti-TB agents
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