Photocatalytic degradation of organic dyes and biological potentials of biogenic zinc oxide nanoparticles synthesized using the polar extract of Cyperus scariosus R.Br. (Cyperaceae)

Author:

Afzal Mohammad1,Ullah Sher1,Assad Nasir1,Naeem-ul-Hassan Muhammad1,Kanwal Maria1,Mubashar Bakhtawar1,Shahzad Roeel1,Nauman Khan Muhammad2,Javed Muhammad Ammar3,Wahab Sana4,Ali Baber4,Adnan Muhammad5,Kaplan Alevcan6,Sarfraz Muhammad Hassan7,Alkahtani Jawaher8,Mehdaoui Imane9

Affiliation:

1. Institute of Chemistry, University of Sargodha , Sargodha 40100 , Pakistan

2. Department of Botany, Islamia College Peshawar , Peshawar 25120 , Pakistan

3. Institute of Industrial Biotechnology, Government College University , Lahore 54000 , Pakistan

4. Department of Plant Sciences, Quaid-i-Azam University , Islamabad 45320 , Pakistan

5. Department of Chemistry, Islamia College Peshawar , Peshawar 25120 , Pakistan

6. Department of Crop and Animal Production, Sason Vocational School, Batman University , Batman , 72060 , Turkey

7. Botnar Institute of Musculoskeletal Sciences, Nuffield Department of Orthopaedics, Rheumatology and Musculoskeletal Sciences, University of Oxford , Oxford , OX3 7LD , United Kingdom

8. Department of Botany and Microbiology, College of Science, King Saud University , Riyadh 11451 , Saudi Arabia

9. Laboratory of Electrochemistry, Modelization and Environment Engineering, Faculty of Science Dhar El MAhraz, Sidi Mohamed Ben Abdellah University , Fez 30000 , Morocco

Abstract

Abstract In this study, the polar root extract of Cyperus scariosus R.Br. was used for the biogenic synthesis of ZnO NPs. The results of this study show that ZnO NPs have a spherical structure with an average size of 85.4 nm. The synthesized catalysts were tested for their photocatalytic activity by degrading methyl orange and methylene blue under sunlight. Improved degradation efficiencies of 79.44% and 84.92% were achieved within 120 min. ZnO NPs exhibited strong antibacterial activity against both Gram-positive Listeria monocytogenes (18 mm) and Staphylococcus epidermidis (20 mm) and Gram-negative strains of Escherichia coli (16 mm) and Bordetella bronchiseptica (14 mm), as shown by the inhibition zones, which were comparable to the positive control (ceftriaxone) but larger than the plant root extract. ZnO NPs showed high antioxidant activity, as a ferric-reducing antioxidant power assay value of 66.29 µg (AAE µg·mL−1) and a DPPH value of 57.44 µg (AAE µg·mL−1) were obtained at a concentration of 500 µL, which was higher than those of the C. scariosus root extract. Quantification of the total phenolic and flavonoid content yielded values of 57.63 µg (GAE µg·mL−1) and 70.59 µg (QCE µg·mL−1), respectively. At a concentration of 500 μL (1 mg·mL−1), the tested nanoparticles (NPs) showed a greater anti-inflammatory effect (84.12%) compared to the root extract of C. scariosus (34.39%). Overall, our findings highlight the versatile properties of green synthesized ZnO NPs and demonstrate their potential for environmental remediation and antimicrobial formulations, as well as promising candidates for further investigation in biomedical fields such as drug delivery and therapy.

Publisher

Walter de Gruyter GmbH

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