Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

BODIPY-labelled estrogens for fluorescence analysis of environmental microbial degradation

View through CrossRef
Biodegradation of estrogen hormone micropollutants is a well-established approach towards their remediation. Fluorescently labelled substrates are used extensively for rapid, near real-time analysis of biological processes and are a potential tool for studying biodegradation processes faster and more efficiently than conventional approaches. However, it is important to understand how the fluorescently tagged surrogates compare with the natural substrate in terms of chemical analysis and the intended application. We derivatized three natural estrogens with BODIPY fluorophores by azide-alkyne cycloaddition click reaction and developed an analytical workflow based on simple liquid-liquid extraction and HPLC-PDA analysis. The developed methods allow for concurrent analysis of both fluorescent and natural estrogens with comparable recovery, accuracy, and precision. We then evaluated the use of BODIPY-labelled estrogens as surrogate substrates for studying biodegradation using a model bacterium for estrogen metabolism. The developed analytical methods were successfully employed to compare the biological transformation of 17β-estradiol (E2), with and without BODIPY fluorescent tag. Through measuring the complete degradation of E2 and the transformation of BODIPY-estradiol to BODIPY-estrone in the presence of a co-substrate, we found that BODIPY-labelled estrogens are biologically viable surrogates for investigating biodegradation in environmental bacteria.
Title: BODIPY-labelled estrogens for fluorescence analysis of environmental microbial degradation
Description:
Biodegradation of estrogen hormone micropollutants is a well-established approach towards their remediation.
Fluorescently labelled substrates are used extensively for rapid, near real-time analysis of biological processes and are a potential tool for studying biodegradation processes faster and more efficiently than conventional approaches.
However, it is important to understand how the fluorescently tagged surrogates compare with the natural substrate in terms of chemical analysis and the intended application.
We derivatized three natural estrogens with BODIPY fluorophores by azide-alkyne cycloaddition click reaction and developed an analytical workflow based on simple liquid-liquid extraction and HPLC-PDA analysis.
The developed methods allow for concurrent analysis of both fluorescent and natural estrogens with comparable recovery, accuracy, and precision.
We then evaluated the use of BODIPY-labelled estrogens as surrogate substrates for studying biodegradation using a model bacterium for estrogen metabolism.
The developed analytical methods were successfully employed to compare the biological transformation of 17β-estradiol (E2), with and without BODIPY fluorescent tag.
Through measuring the complete degradation of E2 and the transformation of BODIPY-estradiol to BODIPY-estrone in the presence of a co-substrate, we found that BODIPY-labelled estrogens are biologically viable surrogates for investigating biodegradation in environmental bacteria.

Related Results

BODIPY-labelled estrogens for fluorescence analysis of environmental microbial degradation
BODIPY-labelled estrogens for fluorescence analysis of environmental microbial degradation
Biodegradation of estrogen hormone micropollutants is a pervasive approach towards their remediation. Fluorescently labelled substrates are used extensively for rapid, near real-ti...
BODIPY-labelled estrogens for fluorescence analysis of environmental microbial degradation
BODIPY-labelled estrogens for fluorescence analysis of environmental microbial degradation
Biodegradation of estrogen hormone micropollutants is a pervasive approach towards their remediation. Fluorescently labelled substrates are used extensively for rapid, near real-ti...
Reduced Lung Cancer Mortality Risk among Breast Cancer Patients Treated with Anti-Estrogens.
Reduced Lung Cancer Mortality Risk among Breast Cancer Patients Treated with Anti-Estrogens.
Abstract Background: The Women Health Initiative study recently reported that women on hormone replacement therapy (HRT) were at increased risk of dying from lung ca...
Solvent-Dependent Fluorescence Properties of CH2-bis(BODIPY)s
Solvent-Dependent Fluorescence Properties of CH2-bis(BODIPY)s
Biocompatible luminophores based on organic dyes, which have fluorescence characteristics that are highly sensitive to the properties of the solvating medium, are of particular int...
Fecal microbial determinants of fecal and systemic estrogens and estrogen metabolites: a cross-sectional study
Fecal microbial determinants of fecal and systemic estrogens and estrogen metabolites: a cross-sectional study
Abstract Background High systemic estrogen levels contribute to breast cancer risk for postmenopausal women, whereas low levels contribute to ost...
Practical aspects of laboratory monitoring of estrogens in men
Practical aspects of laboratory monitoring of estrogens in men
Since the discovery of estrogens in the 30s of the XX century, scientific and practical interest in them has been concentrated exclusively from the standpoint of female endocrinolo...
Applications of Total Scanning Fluorescence to Exploration Geochemistry
Applications of Total Scanning Fluorescence to Exploration Geochemistry
ABSTRACT A total scanning fluorescence technique is described for correlation (oil/oil and oil/source rock) and surface geochemical prospecting studies. The fluor...

Back to Top