Heavy metals are considered the most common pollutants in industrial wastewater areas. Out of thirty bacterial isolates, only 3 isolates sighted the highest metal resistance activity for Zn, Fe, Pb, Co, Mn, Ni, and Cd. The biochemical and DNA homology identification with similarities 99.58%, 99.79%, and 99.86% of those isolates was identified and deposited in WDCM, respectively, as Enterobacter kobei OM144907 SCUF0000311, Enterobacter cloacae OM180597 SCUF0000312, and Enterobacter hormaechei OM181067 SCUF0000313. The minimum tolerance activity (MIC) of heavy metal concentrations against E. kobei and E. cloacae was 25, 15, and 15 mmol/l for Ni, Fe, and Mn, respectively, and 10 mmol/l for Zn, Pb, Co, and Cd, while against E. hormaechei, it is 15 mmol/l for Ni, Fe, and Mn and 10 mmol/l for Zn, Pb, Co, and Cd. The consortium and solitary application of bacterial isolates towards heavy metal removal at 100%, 200%, and 300% industrial wastewater concentrations were conducted and showed that more than 90% removal of Zn, Fe, Pb, Mn, Ni, and Cd from a non-concentrated polluted sample (100%) was reported by the three strains. With doubling the polluted sample concentration (200%), the highest removal efficiency for Zn, Pb, Mn, Ni, and Cd was reported by E. cloacae as 70. 75, 66, 65, and 57%, respectively. Removal efficiency after increasing the polluted sample concentration to 300% showed that E. cloacae removed above 45% of all tested heavy metals except Pb. Ultimately, E. cloacae exposed the highest efficiency with recommendations for heavy metals removal under higher concentrations.
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http://dx.doi.org/10.1007/s10661-023-11951-x | DOI Listing |
Microb Cell Fact
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Botany Department, Faculty of Science, Tanta University, Tanta, 31527, Egypt.
Extensive anthropogenic activity has led to the accumulation of organic and inorganic contaminants in diverse ecosystems, which presents significant challenges for the environment and its inhabitants. Utilizing microalgae as a bioremediation tool can present a potential solution to these challenges. Microalgae have gained significant attention as a promising biotechnological solution for detoxifying environmental pollutants.
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College of Resources and Environment, Northeast Agricultural University, Harbin 150030 Heilongjiang, China. Electronic address:
Enhancing the passivation of heavy metals and increasing organic matter content during the composting of sewage sludge poses significant challenges for maximizing its utilization value. Results indicated that in the control, biochar, microbial agents and microbial agents-loaded biochar (BCLMA) groups, BCLMA addition led to a higher composting temperature, with increases of 17-62% in humic acid, 25-73% in germination index, and 30-35% in organic matter consumption. And the residual fraction of Cu, Zn, Cr and Cd were increased by 30%, 12%, 22%, and 17%, respectively.
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First Affiliated Hospital of Anhui University of Chinese Medicine, Hefei, Anhui, China.
This study investigates levels of cuproptosis markers in Wilson disease (WD) and their role in the occurrence and development of WD. We retrospectively collected clinical data from 76 patients with Leipzig score ≥ 4 hospitalized in the First Affiliated Hospital of Anhui University of Chinese Medicine from January 2023 to September 2023. The participants were given copper chelators (sodium dimercaptosulphonate (20 mg·kg-1), 4 courses of treatment, 32 days).
View Article and Find Full Text PDFPLoS One
January 2025
Chakri Naruebodindra Medical Institute, Faculty of Medicine Ramathibodi Hospital, Mahidol University, Samut Prakan, Thailand.
Cadmium is a non-essential element and neurotoxin that causes neuroinflammation, which leads to neurodegenerative diseases and brain cancer. To date, there are no specific or effective therapeutic agents to control inflammation and alleviate cadmium-induced progressive destruction of brain cells. Fluoroquinolones (FQs), widely used antimicrobials with effective blood-brain barrier penetration, show promise in being repurposed as anti-inflammatory drugs.
View Article and Find Full Text PDFJ Patient Rep Outcomes
January 2025
Division of Oral Surgery and Orthodontics, Department of Dental Medicine and Oral Health, Medical University of Graz, Graz, Austria.
Purpose: Zirconia dental implants show excellent biocompatibility and tissue integration, low affinity for plaque, and favorable biomechanical properties. However, these objective measures do not adequately replicate the patient's perception. This systematic review evaluated the evidence on patient-reported outcome (PROs) in zirconia dental implant treatment.
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