000 03520cam a2200349 a 4500
003 EG-GiCUC
005 20250223032804.0
008 210822s2021 ua dh f m 000 0 eng d
040 _aEG-GiCUC
_beng
_cEG-GiCUC
041 0 _aeng
049 _aDeposite
097 _aM.Sc
099 _aCai01.12.02.M.Sc.2021.Ba.B
100 0 _aBasma Hassanien Elsaadani
245 1 0 _aBiosynthesis, characterization and application of metallic nanoparticles /
_cBasma Hassanien Elsaadani ; Supervised Mohammed Ali Eldesouky , Heba Mohamed Kamal , Zeinab Ali Zakaria
246 1 5 _aالتشييد الحيوى ،التوصيف والتطبيق لجسيمات النانو المعدنية
260 _aCairo :
_bBasma Hassanien Elsaadani ,
_c2021
300 _a87 P. :
_bcharts , facsimiles ;
_c25cm
502 _aThesis (M.Sc.) - Cairo University - Faculty of Science - Department of Biochemistry
520 _aThe synthesis of eco-friendly nanoparticles is a needy branch of nanoscience for biomedical application. Affordable cost of synthesis and non-toxicity are main features make it more attractive and potential option for biomedical field and elsewhere. The aim of this work is to synthesize gold nanoparticles (AuNPs) using calendula officinalis flower extract as a reducing agent and investigate photocatalytic activity, antibacterial activity, antioxidant activity and anticancer activity of the bio-synthesized gold nanoparticles. The biosynthesized AuNPs were characterized by UV{u2013}Vis spectroscopy, Transmission Electron Microscopy (TEM), Zeta potential analysis, Energy dispersive X-ray spectroscopy (EDX) and Fourier transform infrared spectroscopy (FTIR). The antimicrobial efficacies towards Bacillus subtitis and Staphylococcus aureus as a gram-positive pathogenic bacterium, Escherichia coli and Pseudomonas aeruginosa as a gram-negative pathogenic bacterium were tested. Furthermore, the antioxidant capability using 2,2-diphenyl-1- picrylhydrazyl (DPPH) was measured. Also, the photo-catalytic capacity for degradation of methylene blue dye (MB) was examined. Moreover, MTT assay were carried out to investigate the cytotoxic effect of the biosynthesized AuNPs on Colorectal cell line and melanoma cell line. Based on TEM images, there are three different shapes spherical, anisotropic and flower shape with average size 13-30 nm, 50-80 nm and 50 nm for AuNPs (A), AuNPs(B) and AuNPs (C) respectively. As FT-IR findings the AuNPs and plant were linked via a hydrogen bonding. The AuNPs revealed effective photo-degradation for MB. The highest antioxidant activity was achieved by using AuNPs(C).The antimicrobial activity demonstrated the remarkable activity of AuNPs(A) over AuNPs(B) and AuNPs(C) on the four bacterial strains. Results of MTT assay revealed significant cytotoxic activity of AuNPs(A) over AuNPs(C) while AuNPs (B) showed no cytotoxic effect at all. The results of the current study spot light for using used Egyptian plant for fabricating NPs that could be involved in huge biomedical and industrial applications as food packaging and antibacterial dressings
530 _aIssued also as CD
653 4 _aBiosynthesis
653 4 _aCalendula officinalis
653 4 _aGold nanoparticles
700 0 _aHeba Mohamed Kamal ,
_eSupervisor
700 0 _aMohammed Ali Eldesouky ,
_eSupervisor
700 0 _aZeinab Ali Zakaria ,
_eSupervisor
856 _uhttp://172.23.153.220/th.pdf
905 _aNazla
_eRevisor
905 _aShimaa
_eCataloger
942 _2ddc
_cTH
999 _c81786
_d81786