Soybean lipophilic proteins — Origin and functional properties as affected by interaction with storage proteins
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[1] Tomohiko Mori,et al. Structure-Function Relationships of Soy Proteins , 2017 .
[2] Y. Matsumura,et al. Interfacial and emulsifying properties of crude and purified soybean oil bodies , 2017 .
[3] Y. Matsumura,et al. Solubility of soy lipophilic proteins: comparison with other soy protein fractions , 2017, Bioscience, biotechnology, and biochemistry.
[4] Y. Hua,et al. The characterization of soybean oil body integral oleosin isoforms and the effects of alkaline pH on them. , 2015, Food chemistry.
[5] M. Rayner. Current status on novel ways for stabilizing food dispersions by oleosins, particles and microgels , 2015 .
[6] Yapeng Fang,et al. Soy proteins: A review on composition, aggregation and emulsification , 2014 .
[7] Y. Hua,et al. Macronutrients and micronutrients of soybean oil bodies extracted at different pH. , 2014, Journal of food science.
[8] Xiaoquan Yang,et al. Soy lipophilic protein nanoparticles as a novel delivery vehicle for conjugated linoleic acid. , 2014, Food & function.
[9] M. Bonn,et al. The role of intact oleosin for stabilization and function of oleosomes. , 2013, The journal of physical chemistry. B.
[10] Xiaoquan Yang,et al. Formation of complex interface and stability of oil-in-water (O/W) emulsion prepared by soy lipophilic protein nanoparticles. , 2013, Journal of agricultural and food chemistry.
[11] A. Junghans,et al. Soybean oleosomes behavior at the air-water interface. , 2012, The journal of physical chemistry. B.
[12] Xiaoquan Yang,et al. Stabilization of soybean oil body emulsions using ι-carrageenan: Effects of salt, thermal treatment and freeze-thaw cycling , 2012 .
[13] Ian D Fisk,et al. Soybean (Glycine max) oil bodies and their associated phytochemicals. , 2011, Journal of food science.
[14] Xiaoquan Yang,et al. Comparison of Flavor Volatiles and Some Functional Properties of Different Soy Protein Products , 2011 .
[15] Yeming Chen,et al. Simple extraction method of non-allergenic intact soybean oil bodies that are thermally stable in an aqueous medium. , 2010, Journal of agricultural and food chemistry.
[16] M. Inoue,et al. Isoflavone intake and risk of lung cancer: a prospective cohort study in Japan. , 2010, The American journal of clinical nutrition.
[17] V. Jordan,et al. Selective Estrogen Receptor Modulators and Phytoestrogens , 2008, Planta medica.
[18] M. Corredig,et al. Protein Subunit Composition Effects on the Thermal Denaturation at Different Stages During the Soy Protein Isolate Processing and Gelation Profiles of Soy Protein Isolates , 2008 .
[19] R. Kanamoto,et al. Physiological Function and Its Mechanism of Soybean Lipophilic Protein as a Functional Food for Prevention of Metabolic Syndrome , 2008 .
[20] Y. Kokubo,et al. Association of Dietary Intake of Soy, Beans, and Isoflavones With Risk of Cerebral and Myocardial Infarctions in Japanese Populations: The Japan Public Health Center–Based (JPHC) Study Cohort I , 2007, Circulation.
[21] M. Corredig,et al. Influence of heating on oil-in-water emulsions prepared with soybean soluble polysaccharide. , 2007, Journal of agricultural and food chemistry.
[22] M. Kito,et al. Abundant proteins associated with lecithin in soy protein isolate , 2007 .
[23] Xiaoxiong Zeng,et al. Optimization of extraction and isolation for 11S and 7S globulins of soybean seed storage protein , 2007 .
[24] Y. Matsuzawa,et al. Decreases in serum triacylglycerol and visceral fat mediated by dietary soybean beta-conglycinin. , 2006, Journal of atherosclerosis and thrombosis.
[25] F. Netto,et al. Physicochemical and functional properties of soy protein isolate as a function of water activity and storage , 2006 .
[26] M. Berhow,et al. Inhibition of Akt signaling and enhanced ERK1/2 activity are involved in induction of macroautophagy by triterpenoid B-group soyasaponins in colon cancer cells. , 2006, Carcinogenesis.
[27] Cheng-Yu Tsai,et al. Effects of soy components on blood and liver lipids in rats fed high-cholesterol diets. , 2005, World journal of gastroenterology.
[28] A. Pantuck,et al. Comparisons of percent equol producers between prostate cancer patients and controls: case-controlled studies of isoflavones in Japanese, Korean and American residents. , 2004, Japanese journal of clinical oncology.
[29] Anupam Malhotra,et al. The effect of surfactants on the solubility, zeta potential, and viscosity of soy protein isolates , 2004 .
[30] Tomohiko Mori,et al. Inhibitory effects of peptide-bound polysaccharides on lipid oxidation in emulsions , 2003 .
[31] Taro Masuda,et al. Crystal structure of soybean 11S globulin: Glycinin A3B4 homohexamer , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[32] A. Nakamura,et al. Effect of soybean soluble polysaccharides on the stability of milk protein under acidic conditions , 2003 .
[33] Tomohiko Mori,et al. Properties of Rice Cooked with Commercial Water-soluble Soybean Polysaccharides Extracted under Weakly Acidic Conditions from Soybean Cotyledons , 2003, Bioscience, biotechnology, and biochemistry.
[34] Tomohiko Mori,et al. Effects of water activity and lipid addition on secondary structure of zein in powder systems. , 2003, Journal of agricultural and food chemistry.
[35] Koji Takahashi,et al. Structure-physicochemical function relationships of soybean beta-conglycinin heterotrimers. , 2002, Journal of agricultural and food chemistry.
[36] Koji Takahashi,et al. The effect of the N-linked glycans on structural features and physicochemical functions of soybean β-conglycinin homotrimers , 2002 .
[37] E. Molina,et al. Emulsifying properties of high pressure treated soy protein isolate and 7S and 11S globulins , 2001 .
[38] K. Okubo,et al. Superoxide- and 1,1-Diphenyl-2-picrylhydrazyl Radical-scavenging Activities of Soyasaponin β g Related to Gallic Acid , 2001, Bioscience, biotechnology, and biochemistry.
[39] T. Aoyama,et al. Soy protein isolate and its hydrolysate reduce body fat of dietary obese rats and genetically obese mice (yellow KK) , 2000, Nutrition.
[40] N. Maruyama,et al. Structure-physicochemical function relationships of soybean beta-conglycinin constituent subunits. , 1999, Journal of agricultural and food chemistry.
[41] K. Kohyama,et al. Rheological characteristics and gelation mechanism of tofu (soybean curd) , 1995 .
[42] M. Añón,et al. Effects of Thermal Treatment of Soy Protein Isolate on the Characteristics and Structure-Function Relationship of Soluble and Insoluble Fractions , 1995 .
[43] E. Kurowska,et al. Soy consumption and cholesterol reduction: review of animal and human studies. , 1995, The Journal of nutrition.
[44] C. Tsukamoto,et al. Isolation and Structural Elucidation of DDMP-Conjugated Soyasaponins as Genuine Saponins from Soybean Seeds , 1993 .
[45] K. Kohyama,et al. Rheological studies on the gelation process of soybean 7 S and 11 S proteins in the presence of glucono-.delta.-lactone , 1993 .
[46] J. Tzen,et al. Surface structure and properties of plant seed oil bodies , 1992, The Journal of cell biology.
[47] A. B. Caragay. Cancer-preventive foods and ingredients , 1992 .
[48] A. Huang,et al. Oil bodies and oleosins in seeds , 1992 .
[49] M. Añón,et al. Electrophoretic, solubility and functional properties of commercial soy protein isolates , 1991 .
[50] Tomohiko Mori,et al. Characterization of texture and mechanical properties of heat-induced soy protein gels , 1991 .
[51] S. Damodaran,et al. Thermal gelation of globular proteins: influence of protein conformation on gel strength , 1991 .
[52] N. Kitabatake,et al. Thermal Denaturation of Soybean Protein at Low Water Contents , 1990 .
[53] K. Koba,et al. Protein-fat interaction on serum cholesterol level, fatty acid desaturation and eicosanoid production in rats. , 1988, The Journal of nutrition.
[54] S. Damodaran. Refolding of thermally unfolded soy proteins during the cooling regime of the gelation process: effect on gelation , 1988 .
[55] A. Hermansson. Soy protein gelation , 1986 .
[56] S. Utsumi,et al. Structure-function relationships in food proteins: subunit interactions in heat-induced gelation of 7S, 11S, and soy isolate proteins , 1985 .
[57] P. Sherman,et al. INFLUENCE OF EGG YOLK LIPOPROTEINS ON THE RHEOLOGY AND STABILITY OF O/W EMULSIONS AND MAYONNAISE 1. VISCOELASTICITY OF GROUNDNUT OIL-IN-WATER EMULSIONS AND MAYONNAISE , 1983 .
[58] H. Aoki,et al. EMULSIFYING PROPERTIES OF SOY PROTEIN: CHARACTERISTICS OF 7s AND IIS PROTEINS , 1980 .
[59] J. Kinsella. Functional properties of soy proteins , 1979 .