Photoacoustic (PA) spectroscopy was applied for the first time to quantify lutein in a complex biological matrix. Standard addition of lutein to a biological low-lutein matrix was used for the calibration. The PA signal was found linearly proportional (R > 0.98) to lutein concentration up to 0.3% (w/w). The dynamic range of concentrations extends to 1% (w/w) lutein. For a given experimental set-up the responsivity of PA detector within the range of linearity was estimated to 1.1 mV/1% lutein. Precision of repeated analyses is good with average RSD values of 4 and 5% for blanks and spiked samples, respectively. The analytical parameters indicate that the PA method is fast and sensitive enough for quantification of lutein in supplementary drugs and in the lutein-rich foods.

Photoacoustic Measurement of Lutein in Biological Matrix / D. BICANIC; S. LUTEROTTI S; M. BECUCCI; V. FOGLIANO; P. VERSLOOT. - In: JOURNAL DE PHYSIQUE IV. - ISSN 1155-4339. - STAMPA. - 125:(2005), pp. 825-828. [10.1051/jp4:2005125190]

Photoacoustic Measurement of Lutein in Biological Matrix

BECUCCI, MAURIZIO;
2005

Abstract

Photoacoustic (PA) spectroscopy was applied for the first time to quantify lutein in a complex biological matrix. Standard addition of lutein to a biological low-lutein matrix was used for the calibration. The PA signal was found linearly proportional (R > 0.98) to lutein concentration up to 0.3% (w/w). The dynamic range of concentrations extends to 1% (w/w) lutein. For a given experimental set-up the responsivity of PA detector within the range of linearity was estimated to 1.1 mV/1% lutein. Precision of repeated analyses is good with average RSD values of 4 and 5% for blanks and spiked samples, respectively. The analytical parameters indicate that the PA method is fast and sensitive enough for quantification of lutein in supplementary drugs and in the lutein-rich foods.
2005
125
825
828
D. BICANIC; S. LUTEROTTI S; M. BECUCCI; V. FOGLIANO; P. VERSLOOT
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/250080
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