- Khajeh H., Fazeli-Nasab B., Pourshahdad A., Mirzaei A.R., Ghorbanpour M. Green-synthesized silver nanoparticles induced apoptotic cell death in CACO2 cancer cells by activating MLH1 gene expression. Scientific Reports. 2024; 14(1): 29601.
- Samiei F., Fotoohiyan Z., Salehi-Sardoei A., Fazeli-Nasab B., Mirzaei A.R., Shafi N., Shameem N., Parray J.A. Biosynthesis of Silver Nanoparticles and Their Application in Agriculture. In Parray J A (Ed.), Progress in Soil Microbiome Research (pp. 259-302). Cham: Springer Nature Switzerland. 2024
- Nosrati F., Fakheri B., Ghaznavi H., Mahdinezhad N., Sheervalilou R., Fazeli-Nasab B. Green synthesis of silver nanoparticles from plant Astragalus fasciculifolius Bioss and evaluating cytotoxic effects on MCF7 human breast cancer cells. Scientific Reports. 2025; 15(1): 25474.
- Salary J., Matin H.H., Ghafari K., Hajati H. Effect of in ovo Injection of Calcium Carbonate Nanoparticles on Bone Post Hatched Characteristics and Broiler Chicken Performance. Iranian Journal of Applied Animal Science. 2017; 7(4): 663-667.
- Hu X., Dang X., Shi T., Niu B., Zhang Q., Zheng L., Ni F. Potential Risk of Calcified Nanoparticles for Recurrent Urinary Tract Infection after Minimally Invasive Percutaneous Nephrolithotomy for Renal Calculi. Molecular and Cellular Biology (Noisy-le-grand). 2022; 68(3): 247-257.
- Gandhi N., Shruthi Y., Sirisha G., Anusha C. Facile and eco-friendly method for synthesis of calcium oxide (CaO) nanoparticles and its potential application in agriculture. The Saudi Journal of Life Sciences. 2021; 6: 89-103.
- Sambrook J., Russell D.W. Purification of nucleic acids by extraction with phenol: chloroform. Cold Spring Harbor Protocols. 2006; 2006(1): pdb. prot4455.
- Hamady S.R., Abbass I.J., Kadhim K.F. Detection of Biosynthesis of CuNPs using Pseudomonas aeruginosa Isolated from Soil. International Journal of Biotech Trends and Technology-IJBTT. 2024; 14.
- Kamnev A.A., Dyatlova Y.A., Kenzhegulov O.A., Vladimirova A.A., Mamchenkova P.V., Tugarova A.V. Fourier transform infrared (FTIR) spectroscopic analyses of microbiological samples and biogenic selenium nanoparticles of microbial origin: Sample preparation effects. Molecules. 2021; 26(4): 1146.
- Ma H., Shieh K.-J., Qiao T.X. Study of transmission electron microscopy (TEM) and scanning electron microscopy (SEM). Natural Science. 2006; 4(3): 14-22.
- Mori S., Yamada A., Kawai K. Evaluation of the biofilm detection capacity of the Congo Red Agar method for bovine mastitis-causing bacteria. Japanese Journal of Veterinary Research. 2024; 71(3): 109-116.
- Almeida C., Azevedo N.F., Santos S., Keevil C.W., Vieira M.J. Discriminating multi-species populations in biofilms with peptide nucleic acid fluorescence in situ hybridization (PNA FISH). PloS one. 2011; 6(3): e14786.
- Tang J., Kang M., Chen H., Shi X., Zhou R., Chen J., Du Y. The staphylococcal nuclease prevents biofilm formation in Staphylococcus aureus and other biofilm-forming bacteria. Science China Life Sciences. 2011; 54(9): 863-869.
- bakht Dalir S.J., Djahaniani H., Nabati F., Hekmati M. Characterization and the evaluation of antimicrobial activities of silver nanoparticles biosynthesized from Carya illinoinensis leaf extract. Heliyon. 2020; 6(3).
- Saliminasab M., Jabbari H., Farahmand H., Asadi M., Soleimani M., Fathi A. Study of antibacterial performance of synthesized silver nanoparticles on Streptococcus mutans bacteria. Nanomedicine Research Journal. 2022; 7(4): 391-396.
- Furqon I.A., Hikmawati D., Che A.C.A. Antibacterial properties of silver nanoparticle (AgNPs) on stainless steel 316L. Nanomedicine Research Journal. 2021; 6(2): 117-127.
- Patil S.V., Borase H.P., Patil C.D., Salunke B.K. Biosynthesis of silver nanoparticles using latex from few euphorbian plants and their antimicrobial potential. Applied Biochemistry and Biotechnology. 2012; 167(4): 776-790.
- Mathur T., Singhal S., Khan S., Upadhyay D., Fatma T., Rattan A. Detection of biofilm formation among the clinical isolates of staphylococci: an evaluation of three different screening methods. Indian Journal of Medical Microbiology. 2006; 24(1): 25-29.
- Namasivayam S.K.R., Preethi M., Bharani A., Robin G., Latha B. Biofilm inhibitory effect of silver nanoparticles coated catheter against Staphylococcus aureus and evaluation of its synergistic effects with antibiotics. International Journal of Biological & Pharmaceutical Research. 2012; 3(2): 259-265.
- Mulamattathil S.G., Bezuidenhout C., Mbewe M., Ateba C.N. Isolation of environmental bacteria from surface and drinking water in Mafikeng, South Africa, and characterization using their antibiotic resistance profiles. Journal of Pathogens. 2014; 2014(1): 371208.
- Janda J.M., Abbott S.L. The genus Aeromonas: taxonomy, pathogenicity, and infection. Clinical microbiology reviews. 2010; 23(1): 35-73.
- Hashim M. Study the Antibacterial Activity of Gold Nanoparticles against Some Clinical Isolates. PhD Thesis, M. Sc. thesis, department of biology, college of science. 2018
- Kalathil S., Lee J., Cho M.H. Electrochemically active biofilm-mediated synthesis of silver nanoparticles in water. Green Chemistry. 2011; 13(6): 1482-1485.
- Tiwari M., Jain P., Hariharapura R.C., Narayanan K., Bhat U., Udupa N., Rao J.V. Biosynthesis of copper nanoparticles using copper-resistant Bacillus cereus, a soil isolate. Process Biochemistry. 2016; 51(10): 1348-1356.
- Joseph A.T., Prakash P., Narvi S. Phytofabrication and characterization of copper nanoparticles using Allium sativum and its antibacterial activity. International Journal of Science Engineering and Technology. 2016; 4(2): 463-472.
- Yaaqoob L. Evaluation of the biological effect synthesized iron oxide nanoparticles on Enterococcus faecalis. Iraqi Journal of Agricultural Sciences. 2022; 53(2): 440-452.
- Kunwar A., Shrestha P., Shrestha S., Thapa S., Shrestha S., Amatya N.M. Detection of biofilm formation among Pseudomonas aeruginosa isolated from burn patients. Burns Open. 2021; 5(3): 125-129.
- Jadhav V., Bhagare A., Wahab S., Lokhande D., Vaidya C., Dhayagude A., Khalid M., Aher J., Mezni A., Dutta M. Green synthesized calcium oxide nanoparticles (CaO NPs) using leaves aqueous extract of moringa oleifera and evaluation of their antibacterial activities. Journal of Nanomaterials. 2022; 2022(1): 9047507.
- Roy S., Das T.K. Effect of biosynthesized silver nanoparticles on the growth and some biochemical parameters of@@ Aspergillus foetidus. Journal of Environmental Chemical Engineering. 2016; 4(2): 1574-1583.
- Ramola B., Joshi N.C., Ramola M., Chhabra J., Singh A. Green synthesis, characterisations and antimicrobial activities of CaO nanoparticles. Oriental Journal of Chemistry. 2019; 35(3): 1154.
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