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Turkey Tail, Yun Zhi · 2018 · Research Support, Non U.S. Gov'T

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Interactions of 15N-Sulfadiazine and Soil Components As Evidenced by 15N-CPMAS NMR.

Trametes versicolor

OncologyImmune support
SpeciesTurkey Tail, Yun Zhi
JournalEnvironmental science & technology
Year2018

Key points

  • The implementation of regulations and management recommendations to reduce the potential risk of development of antibiotic resistances necessitates detailed knowledge on their fate in soil
  • We present results from two independent incubation studies of 15 N-labeled sulfadiazines (SDZ) which focused on identifying binding types in bound residues
  • In the first study 15 N-amino labeled SDZ was incubated with two previously isolated humic acids in the presence and absence of Trametes versicolor laccase, while in the second study 15 N-double-labeled SDZ was incubated with a typical agricultural Luvisol and the humic acid fraction isolated after sequential extraction of the soil
  • The freeze-dried humic acid fractions of both studies were then analyzed by 15 N-CPMAS NMR and compared with the 15 N-spectra of synthesized model compounds
  • In both studies amide bonds and Michael adducts were identified, while formation of imine bonds could be excluded
  • In the humic acid study, where less harsh extraction methods were applied, possible formation of H-bridging and sequestration were additionally detected

Metadata-grounded summary

Citation abstract

The extensive use of sulfonamides (SNs) in animal husbandry has led to an unintentional widespread occurrence in several environmental compartments. The implementation of regulations and management recommendations to reduce the potential risk of development of antibiotic resistances necessitates detailed knowledge on their fate in soil. We present results from two independent incubation studies of 15 N-labeled sulfadiazines (SDZ) which focused on identifying binding types in bound residues. In the first study 15 N-amino labeled SDZ was incubated with two previously isolated humic acids in the presence and absence of Trametes versicolor laccase, while in the second study 15 N-double-labeled SDZ was incubated with a typical agricultural Luvisol and the humic acid fraction isolated after sequential extraction of the soil. The freeze-dried humic acid fractions of both studies were then analyzed by 15 N-CPMAS NMR and compared with the 15 N-spectra of synthesized model compounds. In both studies amide bonds and Michael adducts were identified, while formation of imine bonds could be excluded. In the humic acid study, where less harsh extraction methods were applied, possible formation of H-bridging and sequestration were additionally detected.

Citation

Berns AE, Philipp H, Lewandowski H, Choi JH, Lamshöft M, Narres HD (2018). Interactions of 15N-Sulfadiazine and Soil Components As Evidenced by 15N-CPMAS NMR. Environmental science & technology https://doi.org/10.1021/acs.est.7b06164 PMID: 29465228

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