Title : New insights into the pH-dependent interfacial adsorption of dog gastric lipase using the monolayer technique - Benarouche_2013_Colloids.Surf.B.Biointerfaces_111_306 |
Author(s) : Benarouche A , Point V , Parsiegla G , Carriere F , Cavalier JF |
Ref : Colloids Surf B Biointerfaces , 111 :306 , 2013 |
Abstract :
The access to kinetic parameters of lipolytic enzyme adsorption onto lipids is essential for a better understanding of interfacial enzymology and lipase-lipid interactions. The interfacial adsorption of dog gastric lipase (DGL) was monitored as a function of pH and surface pressure (Pi), independently from the catalytic activity, using non-hydrolysable 1,2-dilauroyl-sn-glycero-3-phosphocholine (DLPC) monomolecular films. The acid-stable DGL, which initiates fat digestion in the stomach, was then selected because its adsorption kinetics onto hydrophobic solid surfaces were already studied. This gastric lipase was therefore used as a model enzyme to validate both experimental and theoretical approaches. Results show that the adsorption process of DGL at the lipid/water interface depends on a pH-dependent adsorption equilibrium coefficient which is optimum at pH 5.0 (K(Ads) = 1.7 +/- 0.05 x 10(8)M(-1)). KAds values further allowed an indirect estimation of the molar fraction (PhiE*(%), mol%) as well as the molecular area (AE*) of DGL adsorbed onto DLPC monolayer. Based on these data, a model for DGL adsorption onto DLPC monolayer at pH 5.0 is proposed for a surface pressure range of 15-25 mNm(-1). |
PubMedSearch : Benarouche_2013_Colloids.Surf.B.Biointerfaces_111_306 |
PubMedID: 23838197 |
Benarouche A, Point V, Parsiegla G, Carriere F, Cavalier JF (2013)
New insights into the pH-dependent interfacial adsorption of dog gastric lipase using the monolayer technique
Colloids Surf B Biointerfaces
111 :306
Benarouche A, Point V, Parsiegla G, Carriere F, Cavalier JF (2013)
Colloids Surf B Biointerfaces
111 :306