Yeast-Based Fluorescent Sensors for the Simultaneous Detection of Estrogenic and Androgenic Compounds, Coupled with High-Performance Thin Layer Chromatography.
Liat MoscoviciCarolin RiegrafNidaa Abu-RmailahHadas AtiasDror ShakibaiSebastian BuchingerGeorg ReifferscheidShimshon BelkinPublished in: Biosensors (2020)
The persistence of endocrine disrupting compounds (EDCs) throughout wastewater treatment processes poses a significant health threat to humans and to the environment. The analysis of EDCs in wastewater remains a challenge for several reasons, including (a) the multitude of bioactive but partially unknown compounds, (b) the complexity of the wastewater matrix, and (c) the required analytical sensitivity. By coupling biological assays with high-performance thin-layer chromatography (HPTLC), different samples can be screened simultaneously, highlighting their active components; these may then be identified by chemical analysis. To allow the multiparallel detection of diverse endocrine disruption activities, we have constructed Saccharomyces cerevisiae-based bioreporter strains, responding to compounds with either estrogenic or androgenic activity, by the expression of green (EGFP), red (mRuby), or blue (mTagBFP2) fluorescent proteins. We demonstrate the analytical potential inherent in combining chromatographic compound separation with a direct fluorescent signal detection of EDC activities. The applicability of the system is further demonstrated by separating influent samples of wastewater treatment plants, and simultaneously quantifying estrogenic and androgenic activities of their components. The combination of a chemical separation technique with an optical yeast-based bioassay presents a potentially valuable addition to our arsenal of environmental pollution monitoring tools.
Keyphrases
- wastewater treatment
- saccharomyces cerevisiae
- label free
- liquid chromatography
- antibiotic resistance genes
- mass spectrometry
- quantum dots
- high speed
- loop mediated isothermal amplification
- living cells
- tandem mass spectrometry
- human health
- real time pcr
- healthcare
- poor prognosis
- risk assessment
- escherichia coli
- simultaneous determination
- public health
- high performance liquid chromatography
- mental health
- particulate matter
- air pollution
- fluorescent probe
- microbial community
- single cell
- room temperature
- health risk assessment