Multi-Wavelength Dye Concentration Determination for Enzymatic Assays: Evaluation of Chromogenic para-Nitrophenol over a Wide pH Range

Author:

Max Jean-Joseph12,Meddeb-Mouelhi Fatma23,Beauregard Marc24,Chapados Camille2

Affiliation:

1. 3S Photonics Group (ITF Labs Canada), 400, Montpellier, Montréal, QC H4N 2G7, Canada

2. Département de chimie-biologie, Université du Québec à Trois-Rivières, CP.500 Trois-Rivières, QC G9A 5H7, Canada

3. Buckman Canada, 351, Rue Joseph–Carrier Vaudreuil–Dorion, QC J7V 5V5, Canada

4. PROTEO, Université Laval, 2705 Boul. Laurier, Ste-Foy, QC G1V 4G2, Canada

Abstract

Enzymatic assays need robust, rapid colorimetric methods that can follow ongoing reactions. For this, we developed a highly accurate, multi-wavelength detection method that could be used for several systems. Here, it was applied to the detection of para-nitrophenol (pNP) in basic and acidic solutions. First, we confirmed by factor analysis that pNP has two forms, with unique spectral characteristics in the 240 to 600 nm range: Phenol in acidic conditions absorbs in the lower range, whereas phenolate in basic conditions absorbs in the higher range. Thereafter, the method was used for the determination of species concentration. For this, the intensity measurements were made at only two wavelengths with a microtiter plate reader. This yielded total dye concentration, species relative abundance, and solution pH value. The method was applied to an enzymatic assay. For this, a chromogenic substrate that generates pNP after hydrolysis catalyzed by a lipase from the fungus Yarrowia lipolytica was used. Over the pH range of 3–11, accurate amounts of acidic and basic pNP were determined at 340 and 405 nm, respectively. This method surpasses the commonly used single-wavelength assay at 405 nm, which does not detect pNP acidic species, leading to activity underestimations. Moreover, alleviation of this pH-related problem by neutralization is not necessary. On the whole, the method developed is readily applicable to rapid high-throughput of enzymatic activity measurements over a wide pH range.

Publisher

SAGE Publications

Subject

Spectroscopy,Instrumentation

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