The results of the present study showed that twenty-five samples were collected for the age group 35–40 years and four samples for the age group 65–70 years for both genders. The results showed that 48 (48%) of the samples were obtained from the hands, 16 (16%) from the legs, 12 (12%) from the abdominal area, and 10 (10%) from the chest area. The four (4%) samples were obtained from burns in the back and thighs area. The samples taken according to the cause of burns were 40 (40%) due to hot water, hot liquids, or hot steam, followed by 18 (18%) due to the use of hot tools, 15 (15%) due to fires, 12 (12%) due to electric currents, 10 (10%) due to chemicals such as strong acids, alkaline lye, paint thinner, or gasoline, and 5 (5%) due to sun ray burns. Sixty pathogenic bacteria were obtained from the burn samples. The number of bacteria isolated from burn wounds was 34 isolates from men and 26 isolates from women. The predominant were 15 (25%) Staphylococcus aureus, 12 (20%) Acinetobacter baumannii, 10 (16.7%) Pseudomonas aeruginosa, 8 (13.3%) Klebsiella pneumoniae, 7 (11.7%) Escherichia coli, 6 (10%) Proteus mirabilis, and 2 (3.3%) Burkholderia cepacia. The antibiotic sensitivity test using the Vitek2 Compact System showed that the resistance rate was recorded in Staphylococcus aureus against Amikacin by 13 isolates, with a rate of 86.6%, and in Acinetobacter baumannii, towards Ceftazidime and Piperacillin antibiotics by 12 isolates at a rate of 100%, and Pseudomonas aeruginosa towards Colistin and Tobramycin at a rate of 6 isolates at a rate of 60%, and Klebsiella pneumoniae towards Colistin and Tobramycin at a rate of 8 isolates at a rate of 100% and Escherichia coli against Amikacin, Colistin, and Imipenem with 7 isolates and 100%, and Proteus mirabilis against Colistin and Tobramycin with 6 isolates and 100%, and Burkholderia cepacia against 8 antibiotics with a rate of 100%. We conclude from the present study that the most susceptible age group to burns is the active age group and that the pathogenic bacteria from burn wounds are mostly resistant to antibiotics.
The current study was conducted to determine the sensitivity of some pathogenic bacterial isolates isolated from wounds and burns water toward the disposer of the Yas Rue tested five crude bacterial isolates isolated from wounds and burns which these isolates sensitive to aqueous extract crude
We studied the effect of certain environmental conditions for removing heavy metal elements from contaminated aqueous solutions (Cd, Cu, Pb, Fe, Zn, Ni, Cr) using the bacterium Bacillus subtilis to appoint the optimal conditions for removal ,The best optimum temperature range for two isolate was 30-35○C while the hydrogen number for the maximum mineral removal range was 6-7. The best primary mineral removal was 100 mg/L, while the maximum removal for all minerals was obtained after 6 hrs of Cu element time and the maximum removal efficiency was obtained after 24 hrs of Cu element. The results have proved that the best aeration for maximum removal was obtained at rotation speed of 150 rpm/minute. Inoculums of 5ml/100ml which contained 1
... Show MoreIntroduction and Aim: Klebsiella pneumoniae is a Gram-negative bacterium responsible for a wide range of infections, including respiratory tract infections (RTIs). This research was aimed to study the antibacterial and antibiofilm effect of AgNPs produced by Gram positive and negative bacteria on RTIs associated with K. pneumoniae. Materials and Methods: The biofilm formation of K. pneumoniae was determined by tube method qualitatively from select bacterial species characterized by UV-Visible spectroscopy. The antibacterial susceptibility of the bacteria AgNPs was tested for their antibacterial and antibiofilm activity on a clinical isolate of K. pneumoniae. Results: K. pneumoniae isolated from RTIs were strong biofilm producers. The ant
... Show MoreIntroduction and Aim: Klebsiella pneumoniae is a Gram-negative bacterium responsible for a wide range of infections, including respiratory tract infections (RTIs). This research was aimed to study the antibacterial and anti-biofilm effect of AgNPs produced by Gram positive and negative bacteria on RTIs associated with K. pneumoniae. Materials and Methods: The biofilm formation of K. pneumoniae was determined by tube method qualitatively from select bacterial species characterized by UV-Visible spectroscopy. The antibacterial susceptibility of the bacteria AgNPs was tested for their antibacterial and antibiofilm activity on a clinical isolate of K. pneumoniae. Results: K. pneumoniae isolated from RTIs were strong biofilm prod
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Detection of virulence gene agglutinin-like sequence (ALS) 1 by using molecular technology from clinical samples (