A novel fluorescent long-chain fatty acid-substituted dye: labeling and biodegrading of Microthrix parvicella

Yingchun Gu1, Dayong Lin2, Xuening Fei1

  • 1Tianjin Engineering Technology Center of Chemical Wastewater Source Reduction and Recycling, School of Science, Tianjin Chengjian University Tianjin 300384 China xueningfei@126.com.

RSC Advances
|May 13, 2022
PubMed

Insights

Researchers developed a novel fluorescent probe targeting Microthrix parvicella, a filamentous bacterium causing activated sludge bulking. This probe, utilizing long-chain fatty acids, enables in situ labeling and biodegradation, offering a new tool for wastewater treatment monitoring.

Area of Science:

  • Environmental microbiology
  • Biotechnology
  • Analytical chemistry

Background:

  • Microthrix parvicella is a filamentous bacterium known to cause bulking in activated sludge systems.
  • Effective monitoring of M. parvicella is crucial for optimizing wastewater treatment processes.

Purpose of the Study:

  • To develop a novel fluorescent probe for the specific detection and labeling of Microthrix parvicella.
  • To investigate the probe's properties and its potential for in situ monitoring and biodegradation.

Main Methods:

  • Synthesis of a novel carbazole-based fluorescent probe modified with long-chain fatty acids (LCFA).
  • Characterization of the probe's structure (NMR, mass spectrometry) and properties (spectral, photostability, hydrophobic).
  • In situ fluorescent labeling experiments and computational docking studies (DFTB) of probe-lipase interactions.

Main Results:

  • The novel LCFA-modified carbazole probe successfully labeled Microthrix parvicella in situ.
  • The probe demonstrated good spectral properties, photostability, and hydrophobicity.
  • The probe was found to be biodegradable via microbial metabolism.
  • Docking studies elucidated stable binding modes between the probe, fatty acid chains, and lipases.

Conclusions:

  • The developed fluorescent probe is a promising tool for the specific detection and monitoring of Microthrix parvicella in activated sludge.
  • The probe's biodegradability and specific targeting offer potential advantages for wastewater treatment applications.
  • Further research into probe optimization and application is warranted.