Nanozyme-induced deep learning-assisted smartphone integrated colorimetric and fluorometric dual-mode for detection of tetracycline analogs.

Journal: Analytica chimica acta
PMID:

Abstract

In this work, a colorimetric and fluorescent dual-mode probe controlled by NH-MIL-88 B (Fe, Ni) nanozymes was developed to visually detect tetracycline antibiotics (TCs) residues quantitatively, as well as accurately distinguish the four most widely used tetracycline analogs (tetracycline (TC), chrycline (CTC), oxytetracycline (OTC), and doxycycline (DC)). Colorless substrate 3,3',5,5'-tetramethylbenzidine (TMB) may be oxidized to blue oxidized TMB by the Fe Fenton reaction, which was catalyzed by the NH-MIL-88 B (Fe, Ni) nanozyme with POD-like activity. The colorimetric detection system allows TCs to interact with NH-MIL-88 B (Fe, Ni). This inhibits the production of ·OH, weakens the oxidation process of TMB, and ultimately lightens the blue color in the system by blocking the electron transfer between NH-MIL-88 B (Fe, Ni) and HO. Furthermore, TCs can interact with NH-MIL-88 B (Fe, Ni) as a result of the internal filtering effect, which causes the fluorescence intensity to decrease as TCs concentration increases. Additionally, a portable instrument that combines a smartphone sensing platform with colorimetric and fluorescent signals was created for the quick, visual quantitative detection of TCs. The colorimetric and fluorescent dual-mode nano platform enables color change, with detection limits (LODs) of 0.182 μM and 0.0668 μM for the spectrometer and smartphone sensor, respectively, based on the inhibition of fluorescence and enzyme-like activities by TCs. Overall, the colorimetric and fluorescence dual-mode sensor has good stability, high specificity, and an efficient way to eliminate false-positive issues associated with a single detection mode.

Authors

  • Yi Zhang
    Department of Thyroid Surgery, China-Japan Union Hospital of Jilin University, Jilin University, Changchun, China.
  • Mingyang Wang
    Department of Ultrasound, Tianjin First Central Hospital, NanKai University, Tianjin, 300192, China.
  • Chunfeng Shao
    Anhui Province Key Laboratory of Pollutant Sensitive Materials and Environmental Remediation, Department of Materials Science and Engineering, Huaibei Normal University, Huaibei, 235000, PR China.
  • Tao Liu
    Institute of Urology and Nephrology, The First Affiliated Hospital of Guangxi Medical University, Nanning, China.
  • Mengmeng Sun
  • Chun Wu
    College of Science, Sichuan Agricultural University, Xin Kang Road, Yucheng District, Ya'an, 625014, China, PR China.
  • Gehong Su
    College of Science, Sichuan Agricultural University, Xin Kang Road, Yucheng District, Ya'an, 625014, China, PR China.
  • Yanying Wang
    College of Science, Sichuan Agricultural University, Xin Kang Road, Yucheng District, Ya'an, 625014, China, PR China.
  • Jianshan Ye
    School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou 510641, PR China.
  • Haipeng Hu
    College of Science, Sichuan Agricultural University, Xin Kang Road, Yucheng District, Ya'an, 625014, PR China.
  • Yanbin Li
    Department of Mechanical and Aerospace Engineering, North Carolina State University, Raleigh, NC, 27695, USA.
  • Hanbing Rao
    College of Science, Sichuan Agricultural University, Xin Kang Road, Yucheng District, Ya'an, 625014, China, PR China. Electronic address: rhb@sicau.edu.cn.
  • Zhiwei Lu
    College of Science, Sichuan Agricultural University, Xin Kang Road, Yucheng District, Ya'an, 625014, China, PR China. Electronic address: zhiweilu@sicau.ecu.cn.