Facile, polyherbal drug-mediated green synthesis of CuO nanoparticles and their potent biological applications

Author:

Ansari Mohammad Azam1,Al Dhneem Hassan Nassr2,Ali Syed Ghazanfar3,Jamous Yahya Fahad4,Alomary Mohammad Nasser5,Atwah Banan6,Alhumaidi Maryam Saleh7,Hani Umme8,Haider Nazima9,Asiri Sarah10,Khan Firdos Alam11

Affiliation:

1. Department of Epidemic Disease Research, Institute for Research and Medical Consultations (IRMC), Imam Abdulrahman Bin Faisal University , 31441 , Dammam , Saudi Arabia

2. Department of Internal Medicine, King Fahd Hospital of the University, Imam Abdulrahman Bin Faisal University , 31441 , Dammam , Saudi Arabia

3. Department of Microbiology, Jawaharlal Nehru Medical College, Aligarh Muslim University , Aligarh , U.P. , India

4. Vaccine and Bioprocessing Center, King Abdulaziz City for Science and Technology (KACST) , Riyadh , 11442 , Saudi Arabia

5. Advanced Diagnostic and Therapeutic Institute, King Abdulaziz City for Science and Technology (KACST) , Riyadh , 11442 , Saudi Arabia

6. Clinical Laboratory Sciences Department, College of Applied Medical Sciences, Umm Al-Qura University , Makkah , Kingdom of Saudi Arabia

7. Department of Biology, College of Science, University of Hafr Al Batin , P.O. Box 1803 , Hafr Al Batin , 31991 , Saudi Arabia

8. Department of Pharmaceutics, Collage of Pharmacy, King Khalid University , Abha , Saudi Arabia

9. Department of Pathology, College of Medicine, King Khalid University , Abha , Saudi Arabia

10. Department of Biophysics, Institute for Research and Medical Consultations (IRMC), Imam Abdulrahman Bin Faisal University , P.O. Box: 1982 , Dammam , 31441 , Saudi Arabia

11. Department of Stem Cell Biology, Institute for Research and Medical Consultations, Imam Abdulrahman Bin Faisal University , Post Box No. 1982 , Dammam , 31441 , Saudi Arabia

Abstract

Abstract Copper oxide nanoparticles (CuO NPs) were synthesized using ayurvedic medicine septilin. The septilin-mediated CuO NPs were characterized using UV–Vis, fourier-transform infrared spectroscopy, X-ray diffraction (XRD), scanning electron microscope (SEM), and transmission electron microscope (TEM). The average particle size of CuO NPs was 8 nm as evident from TEM. Minimum inhibitory concentration of CuO NPs against Escherichia coli, Pseudomonas aeruginosa, methicillin-resistant Staphylococcus aureus (MRSA), and Candida albicans was found in the range of 1–2.5 mg·mL−1. CuO NPs dose-dependently decreased the biofilm formation from 0.0315 to 2 mg·mL−1, at the highest dose of 2 mg·mL−1 of CuO NPs; 92.91%, 79.84%, and 71.57% decrease in biofilm was observed for P. aeruginosa, MRSA, and C. albicans, respectively. Down-regulation of biofilm upon treatment with nanoparticles (NPs) was also observed by SEM analysis. SEM analysis also showed the change in morphological structure, and deformities in bacterial and fungal cells upon treatment of NPs. Furthermore, the anticancer efficacy of NPs was assessed using colon cancer (HCT-116). The 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide assay clearly showed the anticancer potential of NPs, as the concentration of CuO NPs increased, the number of viable cells decreased. The produced CuO NPs have promise for future investigations in many biological and therapeutic domains, including the treatment of microbial biofilm infections, as well as the inhibition of cancer cell growth.

Publisher

Walter de Gruyter GmbH

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