Klebsiella pneumoniae causes lethal nosocomial infections, mostly affecting patients with severe burns. More than 80% of its isolates have shown resistance to routinely used antibiotics in parallel with increased infection rates. The study aimed to determine the molecular typing and genetic relatedness of K. pneumoniae. Therefore, 20 multidrug resistant (MDR) K. pneumoniae already isolated from infected burned wounds in two major hospitals of Al-Kut city east Iraq were subjected to genotyping analysis. The random amplified polymorphic DNA (RAPD)-based polymerase chain reaction (PCR) technique was used along with three oligonucleotide primers (P13, OPX-04, and OPY-01). The amplicons’ patterns of the electrophoresis-gel were analyzed by the GelJ software. Results revealed various patterns of DNA bands. A genetic similarity was seen within isolates from some locations. This genetic relatedness was captured by dendrogram analysis of the generated RAPD profiles. However, a genetic diversity among K. pneumoniae clinical isolates was also detected suggesting their different origins as well as ongoing changes of the bacterial genome. Furthermore, this could propose the circulation of many strains simultaneously within the hospitals. Therefore, it is important to consider this genetic heterogeneity when developing control measures for nosocomial K. pneumoniae infections. In conclusion, the current study highlights the dissemination of various MDR K. pneumoniae strains in the burn wards of two major hospitals in Al-Kut city, Iraq. Similar studies need to be performed in other Iraqi hospitals to establish a data base used in infection control systems, to predict, and manage the spread/outbreaks correlated with certain genotypes of resistant strains.
Receipt date: 2/2/2021 accepted date: 4/6/2021 Publication date: 12/31/2021
This work is licensed under a Creative Commons Attribution 4.0 International License.
The approval of the federal general budget in Iraq is one of the most important competencies of the legislative authority , Being one of the important financial and monetary policy instruments on which the state depends for its economic growth , Hence, the obstruction of the approval of the federal b
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Our goal in this research, some new nucleoside analogues was synthesized. Starting from ?-D glucose which was converted to per acetylated ?-D gluco pyronoside then converted to active from(1-Bromo Sugar (2) as a sugar moiety.The base moiety 2-substituted benzimidazole was prepared from condensation of phenylene diamine with different aromatic aldehydes, which were subjected to amino alkylation via Mannich reaction forming new nucleobase derivatives. Condensation of nucleobase with bromo sugar through nucleophilic substitution of anomeric carbon with nitrogen forming new protected nucleoside analogues then hydrolyzed with sodium methoxide in methanol to obtain our target, the free nucleoside analogues. All prepared compound were identified b
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The study included the extraction of volatile oil from Mentha piperita which was 1.3 % in the leaves and flowers . Volatile oil of the Mentha piperita leaves had special aromatic odour, pale yellow color, slightly pungent taste . The specific gravity and refractive index were (0.9794) and ( 1.464) respectively. The inhibition activity of the Mentha piperita Volatile oil extracts were studied on some pathogenic microorganisms like Staphylococcus aureus, Salmonella typhi, Escherichia coli, Proteus sp, and Klebsiella pneumoniae . The result showed that the volatile oil had an inhibition effect on the growth of all microorganisms, and it gave the higher inhibition effect on the growth of S. aureus in which the inhibition zone reached to 2
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