Publications by authors named "Yining Qu"

Article Synopsis
  • Fluoroquinolone antibiotics and antibiotic resistance genes (ARGs) are not effectively removed by conventional wastewater treatment plants (WWTPs), highlighting the need for better methods.
  • Denitrification co-metabolism was studied to see if it could improve the efficiency of antibiotic removal, with varying results depending on the carbon source used for different denitrifying communities.
  • The findings indicate that the choice of carbon source significantly affects both the removal of antibiotics and the spread of ARGs, suggesting a strategic approach to enhance wastewater treatment processes.
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Ce-MOF was synthesized by a solvothermal synthesis method and was used to simultaneously remove phosphate, fluoride and arsenic (V) from water by adsorption. Ce-MOF was characterized by a nitrogen adsorption-desorption isotherm, scanning electron microscopy, and infrared spectroscopy. The effects of initial concentration, adsorption time, adsorption temperature, pH value and adsorbent on the adsorption properties were investigated.

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A novel dual-mode nanoprobe (Apt@MNPS) was created for the detection of autophagy-related miRNAs to monitor the autophagic level and study the effect of PTT on autophagy. Interestingly, using our developed probe, PTT was found to be able to activate the autophagy by down regulation of miR-18a* and miR-4802, which in turn restricted the PTT efficiency for cancer.

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A novel capillary electrophoresis with laser-induced fluorescence detection method has been developed for the analysis of aldehyde metabolism biomarkers for oxidative stress in exhaled breath condensate (EBC), and fluorescein 5-thiosemicarbazide was used as a derivatization reagent. In a simple capillary zone electrophoresis mode, ten low molecular weight aldehydes (LMWAs) could be well separated within 30 min. The reaction efficiency was doubled by increasing sample solution pH and magnetic stirring, and the LODs of this method reached 0.

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