4.7 Article

Au-Fe3O4 heterodimer multifunctional nanoparticles-based platform for ultrasensitive naked-eye detection of Salmonella typhimurium

Journal

JOURNAL OF HAZARDOUS MATERIALS
Volume 436, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.jhazmat.2022.129140

Keywords

Dumbbell-like nanoparticles; Colorimetric detection; Bacteria; Magnetic separation

Funding

  1. Science and Technology Projects of Qingdao [21-1-4-sf-7-nsh]
  2. National Natural Science Foundation of China [21876206]
  3. Key Fundamental Project of Shandong Nat-ural Science Foundation [ZR2020ZD13]
  4. Natural Scientific Foun-dation of Shandong [ZR2020MB064]
  5. Youth Innovation and Technology project of Universities in Shandong Province [2020KJC007]
  6. Graduate Student Innovation Project of China University of Petroleum

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In this study, an ultrasensitive colorimetry for Salmonella typhimurium detection was developed using multifunctional Au-Fe3O4 dumbbell-like nanoparticles (DBNPs), which showed excellent detection capability, efficient capture capability, and good stability and specificity.
In this work, we developed an ultrasensitive colorimetry for Salmonella typhimurium detection with multifunctional Au-Fe3O4 dumbbell-like nanoparticles (DBNPs) which possessed easy bio-modifiability, excellent LSPR characteristics, superparamagnetic properties and super peroxidase-like activity. In the detection, the anti S. typhimurium antibody modified DBNPs (IDBNPs) bound with S. typhimurium and aggregated on their surfaces in a large number, which showed much quicker magnetic response than free IDBNPs. By controlling appropriate separation conditions, IDBNPs@S. typhimurium composites were captured, while free IDBNPs were remained in the supernatant. Therefore, by detecting the absorbance of the supernatant, quantitative detection was achieved from 10 to 1000 CFU/mL. Moreover, utilizing the peroxidase-like activity of IDBNPs, we further realized semi quantitative naked-eye detection. By adding ABTS into the above supernatant, which was oxidized to green chelate (OxABTS), colorimetric signal was amplified significantly, and meanwhile, the green chelates and the wine-red IDBNPs engendered mixed color, enhancing the range of color gradation and greatly improving the visual resolution. Finally, a detection limit (10 CFU/mL) comparable with that of above spectrum measurement was achieved. Besides, our method exhibited efficient capture capability (nearly 100% even for rare S. typhimurium), and had good stability and specificity, and acceptable anti-interference ability in fetal bovine serum and milk samples.

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