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Antibacterial Activity of Lactiplantibacillus plantarum‎ from Dairy Products ‎Against Some ‎Foodborne Bacteria
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Lactiplantibacillus plantarum‎, one of lactic acid bacteria (LAB), is found in various foods, ‎‎including dairy products, meat, and vegetables, and most of these bacteria offer beneficial ‎‎effects to humans and animals as potential probiotics with broad-spectrum antimicrobial ‎‎activities. The aim of this study was evaluating the antibacterial efficacy of L. ‎plantarum‎ ‎against ‎some foodborne bacteria isolated from dairy products. This research involved 34 dairy ‎products, ‎including local and imported milk, cheese, and yogurt sold locally in Baghdad ‎province, Iraq, during May ‎‎2022. For the isolation of L. ‎plantarum‎, a special medium called ‎MRS (de Man Rogosa and ‎Sharpe) was applied. Colonies were purified and identified by routine ‎bacteriological methods, ‎Vitek2 system, and confirmed by the polymerase chain reaction (PCR) ‎targeting the ‎16S rRNA‎ ‎gene followed by the amplicon sequencing. Other aerobic bacteria ‎contaminating dairy products ‎were also isolated onto sterile selective media specific for each ‎microorganism, and the isolates ‎were identified by routine diagnostics tests followed by ‎verification with Vitek2 system. Then, ‎the culture supernatant of L. ‎plantarum‎ was tested for its ‎antagonistic activity toward foodborne ‎bacteria by the use of agar well diffusion assay. The ‎findings showed the isolation of 2 L. ‎plantarum‎‎, 3 Pseudomonas aeruginosa‎, 4 Escherichia coli, ‎one isolate of Bacillus subtilis, and ‎another Staphylococcus hominis. The filtered supernatant of ‎L. ‎plantarum‎ was significantly ‎efficient in inhibiting the growth of the above bacteria. Each of E. ‎coli and B. subtilis‎ revealed ‎zones of inhibition of 36 and 38 mm in diameter, respectively, ‎while P. aeruginosa‎ and S. ‎hominis had inhibition zones diameters of 27 and 29 mm, ‎respectively. This suggests that the L. ‎plantarum‎‎ supernatant possesses a broad-spectrum ‎activity against foodborne bacteria. To ‎conclude, locally made dairy products can hold different ‎contaminating bacteria, which can be ‎eliminated by using probiotics, such as L. ‎plantarum‎, to ‎avoid foodborne diseases onset‎.

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Fri Sep 01 2023
Journal Name
Asian Pacific Journal Of Cancer Prevention
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Tue Oct 01 2024
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Wed Jan 01 2020
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Publication Date
Sat Sep 28 2019
Journal Name
Asian Journal Of Chemistry
Preparation, Spectroscopic Characterization and Theoretical Studies of Transition Metal Complexes with 1-[(2-(1H-indol-3-yl)ethylimino)methyl]naphthalene-2-ol Ligand
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A new Schiff base [1-((2-(1H-indol-3-yl)ethylimino)methyl)naphthalene-2-ol] (HL) has been synthesized by condensing (2-hydroxy-1-naphthaldehyde) with (2-(1H-indol-3-yl)ethylamine). In turn, its transition metal complexes were prepared having the general formula; [Pt(IV)Cl2(L)2], [Re(V)Cl2(L)2]Cl and [Pd(L)2], 2K[M(II)Cl2(L)2] where M(II) = Co, Ni, Cu] are reported. Ligand as well as metal complexes are characterized by spectroscopic techniques such as FT-IR, UV-visible, 13C & 1H NMR, mass, elemental analysis. The results suggested that the ligand behaves like a bidentate ligand for all the synthesized complexes. On the other hand, theoretical studies of the ligand as well its metal complexes were conducted at gas phase using Hyp

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Sat Jun 04 2022
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Wed Dec 01 2021
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Drinking water quality evaluation of hand pumping wells using water quality index and standard algal toxicity testing in Mansoura and Talkha cities, Egypt
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Fri Feb 25 2022
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Publication Date
Sat Aug 01 2020
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Journal Of Water Process Engineering
Humic acid coated sand as a novel sorbent in permeable reactive barrier for environmental remediation of groundwater polluted with copper and cadmium ions
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Plantation of humic acid nanoparticles on the inert sand through simple impregnation to obtain the permeable reactive barrier (PRB) for treating of groundwater contaminated with copper and cadmium ions. The humic acid was extracted from sewage sludge which is byproduct of the wastewater treatment plant; so, this considers an application of sustainable development. Batch tests signified that the coated sand by humic acid (CSHA) had removal efficiencies exceeded 98 % at contact time, sorbent dosage, and initial pH of 1 h, 0.25 g/50 mL and 7, respectively for 10 mg/L initial concentration and 200 rpm agitation speed. Results proved that physicosorption was the predominant mechanism for metals-CSHA interaction because the sorption data followed

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