Background: Mobile phones are approximately widely used everywhere like in hospital wards, clinics and universities as well as biomedical laboratories. They have become very important tool in students’ life. In contrast, these tools carry many harmful bacteria which are responsible for infectious diseases in human because they serve as a reservoir for different pathogens. Current study was aimed to isolate bacteria from students’ mobile phones at the Institute of Medical Technology/Al-Mansour/The Middle Technical University, Baghdad, Iraq. Also, the study investigated microbial resistance to many antimicrobial agents as well as the appropriate remedial measures. Method: Four hundred and fifty swabs from mobile phones were collected from 450 students (271 males and 179 females). Their age range was (17-30) years. Swabs were collected from students during March 2018. Results: Out of the 450 swabs, 150(33.33%) swabs were positive. The percentages of the isolated bacteria according to gender were 53.33%(80 isolates) from males’ mobile phones and 46.66%(70 isolates) from females’ mobile phones. The most frequent Gram-positive bacteria isolated were Staphylococcus aureus (50%) followed by S. epidermidis (20%), whereas Gram-negative bacteria isolated were Escherichia coli (6.0%), Proteus mirabilis (2.66%), Proteus vulgaris (2.66%) and Pseudomonas aeruginosa (2.66%). The isolated bacteria showed variable antimicrobial sensitivity patterns for different antibiotics. Most S. aureus isolates were resistant to Cefotaxime, Gentamycin, Amoxicillin, Ciprofloxacin and Augmentin, whereas other isolated species showed the highest resistance to many antibiotics of interest. The isolates of Micrococcus spp. were sensitive to all the studied antibiotics except Tetracycline and Fucidic acid. Conclusion: The present findings indicated that contaminated students’ mobile phones could serve as reservoirs of bacterial agents. Also, most of the latter were resistant to many commonly prescribed antimicrobial agents.
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This study was conducted to determine the activity of plant Sesbania rostrata and two isolate from arbuscular mycorrhizae fungi (A,B) as a bioremediation of soil polluted by cadmium and lead elements in north and south of Baghdad city. The results showed that the average of soil pollution by cadmium and lead elements in north of Baghdad was less than the average of soil pollution in the south of Baghdad which recorded 10.0, 9.0 mg/kg and 27.0, 25.0 mg/kg respectively. The plant Sesbania recorded ability to accumulate the lead element in shoot system 19.65 mg/kg and in root system 27.2 mg/kg and for cadmium element 19.6, 24.6 mg/kg in shoot and root respectively. The results showed that the isolate A from soil pollution is more effected
... Show MoreABSTRACT : Bacillus cereus and Pseudomonas aeruginosa is the ability to produce a wide antimicrobial active compounds (Bacillin and S-Pyocin) against pathogenic microorganism. In vitro assay with the antagonists of both crude bacteriocin and partial by precipitation 75% ammonium sulfate showed that the effectively inhibited growth of the following (Candida kefyer and Fusarium spp) and Propionibacterium acnes. The results showed the inhibition zone of reached Bacillin (9-13 mm), while Pyocin (13 - 16mm) in solid medium.
DBN Dr. Liqaa Habeb, International Journal of Multidisciplinary Reseach, 2015
JM Karhoot, AA Noaimi, WF Ahmad, The Iraqi Postgraduate Medical Journal, 2012 - Cited by 7
This work revealed the spherical aromaticity of some inorganic E4 cages and their protonated E4H+ ions (E=N, P, As, Sb, and Bi). For this purpose, we employed several evaluations like (0D-1D) nucleus independent chemical shift (NICS), multidimensional (2D-3D) off-nucleus isotropic shielding σiso(r), and natural bond orbital (NBO) analysis. The magnetic calculations involved gauge-including atomic orbitals (GIAO) with two density functionals B3LYP and WB97XD, and basis sets of Jorge-ATZP, 6-311+G(d,p), and Lanl2DZp. The Jorge-ATZP basis set showed the best consistency. Our findings disclosed non-classical aromatic characters in the above molecules, which decreased from N to Bi cages. Also, the results showed more aromaticity in E4 than E4H+
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