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Published on: April 26, 2016
Phenylalanine Photoinduced Fluorescence and Characterization of the Photoproducts by LC-MS
Elísabet Martín-Tornero1,2, Francisco J Sierra-Tadeo3, Isabel Durán-Merás3,4
1Department of Analytical Chemistry, University of Extremadura, 06006, Badajoz, Spain. elisabetmt@unex.es.
Insights
Phenylalanine (Phe) detection is crucial for newborns. UV irradiation in peroxide solutions enhances Phe fluorescence, enabling sensitive quantification in biological samples.
Area of Science:
- Analytical Chemistry
- Biochemistry
Background:
- Phenylalanine (Phe) accumulation causes irreversible brain damage in children.
- Early detection of Phe is vital for timely therapeutic intervention.
- Standard fluorescence analysis of Phe is challenging due to its low quantum yield.
Purpose of the Study:
- To investigate the effect of UV irradiation on Phe in aqueous peroxide solutions.
- To understand how the chemical environment influences photoinduced fluorescence.
- To identify fluorescent photoproducts generated from Phe under UV/peroxide treatment.
Main Methods:
- High-performance liquid chromatography (HPLC) coupled with diode array detector (DAD) and mass spectrometry (MS).
- HPLC coupled with a fast scan spectrofluorimetric detector (FSFD).
- Analysis of environmental factors: pH, Phe concentration, hydrogen peroxide levels, and irradiation time.
Main Results:
- UV irradiation in a peroxide medium significantly enhances Phe fluorescence.
- Several highly fluorescent photoproducts were identified.
- Environmental factors like pH and irradiation time influence photoproduct formation.
Conclusions:
- A method for sensitive Phe determination using UV-induced fluorescence in peroxide media is feasible.
- The formation of fluorescent photoproducts opens possibilities for on-line detection systems.
- This approach could be applied to quantify Phe in human serum and environmental samples.
Abstract:
Phenylalanine (Phe) is a direct precursor of tyrosine and several neurotransmitters. The accumulation of Phe in the brain generates serious and not recoverable pathologies in children. Early detection in newborns is fundamental to apply the appropriate therapy and avoid irreversible health problems. Although fluorescence is a sensitive and selective technique for the determination of amino acids, the fluorescent analysis of Phe is limited since it exhibits a very low fluorescence quantum yield; however, the fluorescence of Phe increases drastically under UV irradiation when a peroxide medium is used. The aim of this research was to analyze the effect of the UV-radiation on Phe aqueous-peroxide solutions and to study the influence of the chemical environment on the photoinducted fluorescence process. The nature and characteristics of the fluorescent photoproducts generated under off-line UV irradiation in hydrogen peroxide medium were achieved by high performance liquid chromatography (HPLC) using a spectrophotometer detector (DAD) coupled in series with a mass spectrometer (MS) or with a fast scan spectrofluorimetric detector (FSFD). Environmental characteristics such as pH, initial concentration of Phe, hydrogen peroxide amount and irradiation time were studied in order to establish their influence on the formation of each one of the photoproducts. As the formation of several highly fluorescent photoproducts has been confirmed, the possibility of designing a chromatographic system with a post-column on-line photoreactor is open. The measure of the total fluorescence signal generated from Phe at the optimized irradiation time, could be used for the determination, with high sensitivity, of the initial amount of Phe in aqueous media, such as human serum or environmental samples. These aspects are being studied at present. .
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