Benzo[a]pyrene (BaP) is a highly carcinogenic and environmentally persistent polycyclic aromatic hydrocarbon (PAH) due to its low bioavailability and resistance to degradation. Microbial fermentation is a promising strategy to eliminate PAH residues in food processing, but the underlying mechanisms remain poorly characterized. Here, we optimized BaP biodegradation by Kefir-derived microorganisms using the Plackett-Burman design and response surface methodology (RSM). Under optimal conditions (12.50 mL of the trace element solution, 1.78 g/L Na2HPO4·2H2O, and 2.88 g/L NaCl), the microorganisms achieved a degradation efficiency of 51.78%. Meta-transcriptomic analysis postulated two key degradation pathways: (I) 3,4-dioxygenase (α and β subunits) catalyzes the initial dioxygenation to produce phenanthrene, and (II) a fluorene-mediated transformation facilitates extensive degradation via the salicylic and phthalic acid pathways. These findings indicate the potential of Kefir-derived microbiota to detoxify BaP in food systems.
Qing Wang, Yi Hu, Bei Zheng et al.· Frontiers in Microbiology· 0 citations
In this study, a pyrene-based fluorescent probe (PCPA) was designed, synthesized and developed for the detection of HA. In the presence of HA, PCPA was converted to the oxime derivative (PCO) through a nucleophilic addition–elimination reaction, accompanied by significant enhancement in fluorescence at 408/425 nm. Further investigations showed that PCPA displayed high sensitivity (LOD = 0.017 µM, λex = 365 nm) within 20 min and high selectivity over other analytes. Moreover, PCPA was capable of recognizing HA in environmental water samples and showed a recovery rate of 95–104% and relative standard deviations (RSD) of 0.56–2.59%. Portable PCPA-loaded paper-based test strips were facilely prepared, which enabled the on-site detection of HA with the aid of a smartphone. These results are expected to make PCPA a potential alternative for HA detection in the field of environmental monitoring.
Wen‐Jie Zhang, Yi Hu, Yan-Chan Huang et al.· RSC Advances· 0 citations