Recent studies highlighted the hazard of emerging antimicrobial resistance (AMR) bacteria in domesticated animals, with multidrug resistance (MRD) patterns in poultry recorded with alarming intensity as a major reservoir. This resistance has been associated with the misuse and overuse of antimicrobial agents in poultry farms. This current study aimed to determine the multidrug resistance (MDR) patterns of Escherichia coli isolated from broiler chickens. A total of 32 human samples were taken from worker handlers (positive: 4 samples, 12.5%), and 40 samples were collected from poultry chickens (positive: 13 samples, 32.5%). The findings revealed marked resistance against six of the ten agents in the isolates (MDR being 100% in all samples and MDRI was 0.6), with AMR observed across various antimicrobial classes, including Trimethoprim 5 µg, Tetracycline 30 µg, Cefazolin 30 µg, Amoxi-clav 30 µg, and Streptomycin 10 µg, as well as moderate resistance to Ciprofloxacin 5 µg. These results suggest a dangerous risk of transmission of AMR E. coli from poultry to humans, exhibiting a serious zoonotic risk, highlighting the urgency of antimicrobial stewardship and integrated precaution strategies with organized protocols to ensure the One Health basis and safeguard both veterinary and human medicine.
Antimicrobial therapies are desperately needed since the threat posed by multidrug‐resistant (MDR) bacteria only grows. Bacteriocins produced by
Multi-drug-resistant uropathogenic Escherichia coli (UPEC) is considered a significant challenge due to its ability to resist antibiotics and form biofilms. UPEC biofilm formers are well protected and largely inaccessible to antibiotics, which leads to persistent infections and evasion of the host immune system. Understanding how ciprofloxacin and trimethoprim/sulfamethoxazole affect biofilm formation is essential for improving treatment strategies for urinary tract infections (UTIs). A total of 76 UPEC isolates were obtained from Iraqi patients and identified using morphological and biochemical characteristics, as well as the Vitek®-2 Compact system. Minimum inhibitory concentrations (MICs) were determined using the Vitek®-2 system, whic
... Show MoreTwo series of 1,3,4-oxadiazole derivatives at the sixth position of the 2,4-di-
This study was carried out at Poultry Research Station, State Board of Agricultural Research, Ministry of Agriculture for the period from 27 September 2014 to 9 November 2014 to evaluate the Supplementation of different levels of Conjugated Linoleic Acid (CLA) on productive performance of broiler. Four hundred eighty chicks (Ross-308),one day old were randomly distributed to four dietary treatments for 42 days of age with 3 replicates/vtreatment (40 bird/replicate). Experimental treatments were as follow; T1 (Control diet) without supplement, while the treatment T2,T3 and T4 were Supplemented with 1, 1.5, 2 g CLA /kg diet respectively. The results showed significant (P ≤ 0.05) increased in mean of body weight, weight gain, ave
... Show MoreThe antimicrobial potency of the crude ethanolic extracts from different Iraqi plants were evaluated . Further more, total sesquiterpene lactones and phenolic compounds were isolated and their antimicrobial activity attempted. The results indicated that crude extracts have no activity except that of Callistemon lanceolatus. Also, the sesquiterpene lactones and phenolic compounds isolated from Callistemon lanceolatus were the most significant antimicrobial active constituents of the studied plants.
In this article the conventional "solid-state reaction" method was used to synthesize perovskite Li0.4Cd0.6Ba2Ca2Cu3O10+δ. Four main types of compounds were obtained by physically replacing calcium oxide with cadmium in proportions 0, 0.03, 0.06 and 0.09, the pure Li0.4Cd0.6Ba2Ca2Cu3O10+δ phase, and the phases Li0.4Cd0.6Ba2Ca1.97Cd0.03Cu3O10+δ
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