Virulent pathotypes of seriously affect the livestock regarding the misuse of antibiotics. All 180 samples collected from cow's environment and dairy shops in Qena, Egypt were serologically and molecularly positive for coliforms. Enteropathogenic (EPEC), Shiga toxin-producing (STEC), Enteroinvasive (EIEC) and Enterotoxigenic (ETEC) pathotypes were isolated from water and milk-related samples. STEC serogroups O26, O55, O111, O113, O145 were also recovered. The non-O157 STEC serotypes were recovered from human diarrheagenic patients contacting cattle or consuming contaminated water/milk products. and genes were detected in 25.5% and 100%, respectively. Disinfectants and algal extracts, identified by GC-MS, were evaluated in vitro for antibacterial activities. TH4+® disinfectant and methanol extract of reduced at 13 log10 at 1.5% and 3 mg/ml concentrations, respectively. Ag-NPs/ showed 8-9 log10 reduction at concentration of 1.6 × 10 NPs/ml. Examined water sources, milk and milk products were potential reservoirs for virulent antibiotic-resistant which may impose animal and public health threats. APEC: Avian pathogenic : β-lactamase inhibitors-Cefotaximase gene; : β-lactamase inhibitors-Temoneira gene; CFU: Colony-forming unit; DAEC: Diffusely adherent ; DEC: Diarrheagenic ; DEMSO: Dimethyl sulfoxide; : Intimin or attaching gene; EAEC: Enteroaggregative ; EHEC: Enterohemorrhagic ; EIEC: Enteroinvasive ; EOSQC: Egyptian Organization for Standardization and Quality Control; EPEC: Enteropathogenic ; ETEC: Enterotoxigenic ; ExPEC: Extra-intestinal pathogenic ; GC-MS: Gas chromatography-mass spectrometry technique; : Hemolysin gene; STEC: Shiga like producing : Shiga-toxin 1 gene; ESBLs: Extended-spectrum beta-lactamases.
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http://dx.doi.org/10.1080/09603123.2020.1727422 | DOI Listing |
Dye-laden wastewater poses a significant environmental and health threat. This study investigated the potential of green-synthesized zinc oxide nanoparticles (ZnO NPs), derived from Padina pavonica brown algae extract, for the removal of methylene blue (MB) dye. The hypothesis was that utilizing algal extract for ZnO NP synthesis would enhance adsorption capacity and photocatalytic activity for dye removal.
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December 2024
Bioresource and Environmental Security, Sandia National Laboratories, P. O. Box 969, Livermore, CA, 94551-0969, USA.
Global health is affected by viral, bacterial, and fungal infections that cause chronic and often fatal diseases. Identifying novel antimicrobials through innovative methods that are active against human pathogens will create a new, necessary pipeline for chemical discovery and therapeutic development. Our goal was to determine whether algal production systems represent fertile ground for discovery of antibiotics and antifungals.
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December 2024
Centre for Environment Fisheries and Aquaculture Science (CEFAS), Barrack Road, Weymouth DT4 8UB, UK.
Harmful algal biotoxins in the marine environment are a threat to human food safety due to their bioaccumulation in bivalve shellfish. Whilst official control monitoring provides ongoing risk management for regulated toxins in live bivalve molluscs, no routine monitoring system is currently in operation in the UK for other non-regulated toxins. To assess the potential presence of such compounds, a systematic screen of bivalve shellfish was conducted throughout Great Britain.
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November 2024
Nuclear Research Centre of Birine, Ain Oussera 17200, Algeria.
This study represents the first investigation into the ultrasonic and microwave extraction of bioactive metabolites from (red seaweed) and () (brown seaweed), with a focus on their biological activities. The research compares ultrasound-assisted extraction (UAE) with microwave-assisted extraction (MAE) utilizing a hydromethanolic solvent to evaluate their effects on these seaweeds' bioactive compounds and biological activities. The assessment included a series of antioxidant essays: DPPH, ABTS, phenanthroline, and total antioxidant capacity, followed by enzyme inhibition activities: alpha-amylase and urease.
View Article and Find Full Text PDFBioresour Technol
December 2024
Department of Biotechnology, Sathyabama Institute of Science and Technology, Deemed to be University, Chennai 600 119, Tamil Nadu, India.
This study investigates the potentials of Chlorococcum humicolo algal biomass for the extraction of valuable biochemical and biodiesel production, with focus on the phycoremediation of textile dye effluents. The alga was cultivated in three media: CFTRI medium, combined dye effluent, and dye bath effluent in the laboratory. The highest cell count (254 × 10 cells/ml) and lowest oil content (16.
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