In situ Fourier transform infrared-attenuated total reflection spectroscopy and modeling investigation of protein adsorption: Case of expanded bovine serum albumin on titanium dioxide anatase

Author:

Tadjine Moustafa12ORCID,Bouzidi Fatima13ORCID,Berbri Abderrezak1ORCID,Nehmar Hamid4ORCID,Bouhekka Ahmed45ORCID

Affiliation:

1. Department of Physics, Faculty of Exact Sciences and Informatics, Hassiba Benbouali University of Chlef 1 , P.B. 78 C, National Road No. 19, Ouled Fares, 02180 Chlef, Algeria

2. Theoretical Physics and Material Physics Laboratory, Hassiba Benbouali University of Chlef 2 , P.B. 151, Hay Salem, National Road No. 19, 02000 Chlef, Algeria

3. Laboratory of Mechanics and Energy, Hassiba Benbouali University of Chlef 3 , P.B. 151, Hay Salem, National Road No. 19, 02000 Chlef, Algeria

4. Laboratoire de Physique des Couches Minces et Matériaux pour l'Electronique –LPCMME Université Oran 1 Ahmed Ben Bella 4 , B.P. 1524, El M’naouar 31100 Oran, Algeria

5. Department of Matter Sciences, Faculty of Sciences and Technology, Tissemsilt University 5 , P.B. 182, 38000 Tissemsilt, Algeria

Abstract

The purpose of this experimental and modeling research is to study the pH effect and to determine the surface coverage plus the adsorption constant (Ka) of bovine serum albumin (BSA) protein adsorbed on TiO2 anatase surface, respectively. In situ Fourier transform infrared-attenuated total reflection spectroscopy in a flow-through cell was used to study the BSA adsorption on porous TiO2 anatase films. The experiments were performed in water solution, under different pH values, at a concentration of 10−6 mol/l. Theoretically, we extended the two-state model, based on a system of coupled differential equations, by adding a desorption parameter Kd2, for unfolded state. The model was solved taking into account the adsorption (Ka), desorption (Kd1,2), transformation (Kf) coefficients, and the initial solution protein concentration (C0). The findings clearly illustrated that the solution pH drastically changed the behavior of BSA adsorption, whereas the mathematical analytical solutions allowed us to determine the native state (θ1), the unfolded state (θ2), and the full one (θ) surface coverages. Finally, a good application of the approximated model on the experimental work, expanded BSA adsorbed on TiO2 anatase at pH = 1.7, indicated a value of Ka = (408.36 ± 0.996) × 102 mol−1 l min−1.

Funder

Deutscher Akademischer Austauschdienst

Ministère de l'Enseignement Supérieur et de la Recherche Scientifique

Publisher

American Vacuum Society

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