Amaranth proteins foaming properties: adsorption kinetics and foam formation--part 1.
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[1] M. Añón,et al. Effect of acid treatment on structural and foaming properties of soy amaranth protein mixtures , 2012 .
[2] M. Añón,et al. Antioxidant activity of amaranth protein or their hydrolysates under simulated gastrointestinal digestion , 2011 .
[3] Harry Aiking,et al. Future protein supply , 2011 .
[4] M. Añón,et al. Amaranth (Amaranthus hypochondriacus) vicilin subunit structure. , 2010, Journal of agricultural and food chemistry.
[5] M. Añón,et al. Potential antitumor properties of a protein isolate obtained from the seeds of Amaranthus mantegazzianus , 2010, European journal of nutrition.
[6] O. Tavano,et al. Nutritional responses of rats to diets based on chickpea ( Cicer arietinum L.) seed meal or its protein fractions. , 2008, Journal of agricultural and food chemistry.
[7] E. Pawelzik,et al. Influence of various nitrogen applications on protein and amino acid profiles of amaranth and quinoa. , 2008, Journal of agricultural and food chemistry.
[8] V. P. Ruiz-Henestrosa,et al. Interfacial and foaming characteristics of soy globulins as a function of pH and ionic strength , 2007 .
[9] H. Gruppen,et al. Conformational states of sunflower (Helianthus annuus) Helianthinin: effect of heat and pH. , 2004, Journal of agricultural and food chemistry.
[10] M. Añón,et al. Adsorption of Soy Globulin Films at the Air−Water Interface , 2004 .
[11] O. Paredes-López,et al. Optimization of the isoelectric precipitation method to obtain protein isolates from amaranth (Amaranthus cruentus) seeds. , 2002, Journal of agricultural and food chemistry.
[12] E. Dickinson. Milk protein interfacial layers and the relationship to emulsion stability and rheology. , 2001, Colloids and surfaces. B, Biointerfaces.
[13] V. N. Kazakov,et al. Dynamics of protein and mixed protein/surfactant adsorption layers at the water/fluid interface. , 2000, Advances in colloid and interface science.
[14] C. Holt,et al. Adsorption of β‐Lactoglobulin variants A and B to the air–water interface , 1999 .
[15] J. Patino,et al. Interfacial characteristics of food emulsifiers (proteins and lipids) at the air-water interface , 1999 .
[16] S. Damodaran,et al. Energetics of Protein−Interface Interactions and Its Effect on Protein Adsorption , 1999 .
[17] M. Añón,et al. Role of disulfide bonds upon the structural stability of an amaranth globulin. , 1999, Journal of Agricultural and Food Chemistry.
[18] David Julian McClements,et al. Food Emulsions: Principles, Practice, and Techniques , 1998 .
[19] R. Yada,et al. Structural analysis of globulins isolated from genetically different Amaranthus hybrid lines , 1998 .
[20] M. Añón,et al. Common Molecular Features among Amaranth Storage Proteins , 1997 .
[21] S. Damodaran,et al. Food Proteins and Their Applications , 1997 .
[22] M. Añón,et al. Composition and Structural Characterization of Amaranth Protein Isolates. An Electrophoretic and Calorimetric Study , 1996 .
[23] S. Provencher. A constrained regularization method for inverting data represented by linear algebraic or integral equations , 1982 .
[24] W. Horwitz. Official Methods of Analysis , 1980 .
[25] G. Fasman,et al. Computed circular dichroism spectra for the evaluation of protein conformation. , 1969, Biochemistry.
[26] Oliver H. Lowry,et al. Protein measurement with the Folin phenol reagent. , 1951, The Journal of biological chemistry.
[27] M. Añón,et al. Interfacial and emulsifying properties of amaranth (Amaranthus hypochondriacus) protein isolates under different conditions of pH , 2012 .
[28] S. Arntfield,et al. The Influence of Processing Parameters on Food Protein Functionality I. Differential Scanning Calorimetry as an Indicator of Protein Denaturation , 1981 .
[29] P. Walstra,et al. Protein‐stabilized foams and emulsions , 1981 .