Retardation Mechanism of Crystallization of Diacylglycerols Resulting from the Addition of Polyglycerol Fatty Acid Esters
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Y. Katsuragi | Kiyotaka Sato | K. Yasunaga | S. Ueno | M. Shimizu | K. Taguchi | K. Saitou | R. Homma
[1] O. Lai,et al. Rheological properties, textural properties, and storage stability of palm kernel-based diacylglycerol-enriched mayonnaise , 2016 .
[2] S. Kiil,et al. Kinetic modeling of multi‐component crystallization of industrial‐grade oils and fats , 2015 .
[3] K. Dewettinck,et al. Triacylglycerol crystal growth: templating effects of partial glycerols studied with synchrotron radiation microbeam X-ray diffraction , 2014 .
[4] Y. Katsuragi,et al. Retardation of Crystallization of Diacylglycerol Oils Using Polyglycerol Fatty Acid Esters , 2014 .
[5] C. Tan,et al. Compositional and thermal characteristics of palm olein-based diacylglycerol in blends with palm super olein , 2014 .
[6] Kiyotaka Sato,et al. Effects of Polyglycerine Fatty Acid Esters Having Different Fatty Acid Moieties on Crystallization of Palm Stearin , 2013 .
[7] R. Craven,et al. Polymorphism of acylglycerols: a stereochemical perspective. , 2013, Chemical reviews.
[8] A. Marangoni,et al. Unsaturated emulsifier-mediated modification of the mechanical strength and oil binding capacity of a model edible fat crystallized under shear. , 2012, Langmuir : the ACS journal of surfaces and colloids.
[9] D. Rousseau,et al. Triacylglycerol Interfacial Crystallization and Shear Structuring in Water-in-Oil Emulsions , 2012 .
[10] Kiyotaka Sato,et al. Synchrotron radiation macrobeam and microbeam X-ray diffraction studies of interfacial crystallization of fats in water-in-oil emulsions. , 2012, Langmuir : the ACS journal of surfaces and colloids.
[11] Y. Katsuragi,et al. Crystallization Behavior of Diacylglycerol-Rich Oils Produced from Rapeseed Oil , 2012 .
[12] Feng-Hong Huang,et al. Influence of Extraction Processing on Rheological Properties of Rapeseed Oils , 2012 .
[13] Kiyotaka Sato,et al. Crystallization, transformation and microstructures of polymorphic fats in colloidal dispersion states , 2011 .
[14] R. Craven,et al. Crystallization, Polymorphism, and Binary Phase Behavior of Model Enantiopure and Racemic 1,3-Diacylglycerols , 2011 .
[15] K. Smith,et al. Crystallization of Fats: Influence of Minor Components and Additives , 2011 .
[16] R. Craven,et al. Binary Phase Behavior of Diacid 1,3-Diacylglycerols , 2011 .
[17] R. Craven,et al. Crystallization and Polymorphism of 1,3-Acyl-Palmitoyl-rac-Glycerols , 2011 .
[18] O. Lai,et al. Crystallization kinetics of palm oil in blends with palm-based diacylglycerol , 2011 .
[19] E. Terentjev,et al. Effects of water on aggregation and stability of monoglycerides in hydrophobic solutions. , 2010, Langmuir.
[20] S. Ueno,et al. Scanning microbeam small-angle X-ray diffraction study of interfacial heterogeneous crystallization of fat crystals in oil-in-water emulsion droplets. , 2009, Langmuir : the ACS journal of surfaces and colloids.
[21] C. Tan,et al. Physicochemical, Textural and Viscoelastic Properties of Palm Diacylglycerol Bakery Margarine During Storage , 2009 .
[22] E. Terentjev,et al. Aging and metastability of monoglycerides in hydrophobic solutions. , 2008, Langmuir : the ACS journal of surfaces and colloids.
[23] E. Terentjev,et al. Phase behavior of C18 monoglyceride in hydrophobic solutions , 2008, 0808.3076.
[24] K. Dewettinck,et al. Influence of Monoglycerides on the Crystallization Behavior of Palm Oil , 2008 .
[25] R. Candal,et al. Nucleation Behavior of Blended High-Melting Fractions of Milk Fat as Affected by Emulsifiers , 2005 .
[26] Kiyotaka Sato,et al. Influences of fatty acid moiety and esterification of polyglycerol fatty acid esters on the crystallization of palm mid fraction in oil-in-water emulsion. , 2004, Colloids and surfaces. B, Biointerfaces.
[27] O. Mykhaylyk,et al. The packing of triacylglycerols from SAXS measurements: Application to the structure of 1,3-distearoyl-2-oleoyl-sn-glycerol crystal phases , 2004 .
[28] K. Maki,et al. Consumption of diacylglycerol oil as part of a reduced-energy diet enhances loss of body weight and fat in comparison with consumption of a triacylglycerol control oil. , 2002, The American journal of clinical nutrition.
[29] N. Tada,et al. Dynamics of postprandial remnant-like lipoprotein particles in serum after loading of diacylglycerols. , 2001, Clinica chimica acta; international journal of clinical chemistry.
[30] H. Kondo,et al. Dietary diacylglycerol suppresses high fat and high sucrose diet-induced body fat accumulation in C57BL/6J mice. , 2001, Journal of lipid research.
[31] H. Itakura,et al. Double-Blind Controlled Study on the Effects of Dietary Diacylglycerol on Postprandial Serum and Chylomicron Triacylglycerol Responses in Healthy Humans , 2000, Journal of the American College of Nutrition.
[32] H. Itakura,et al. Dietary diacylglycerol suppresses accumulation of body fat compared to triacylglycerol in men in a double-blind controlled trial. , 2000, The Journal of nutrition.
[33] Daniel P. Geller,et al. Rheology of vegetable oil analogs and triglycerides , 2000 .
[34] J. Yano,et al. Molecular interactions and kinetic properties of fats. , 1999, Progress in lipid research.
[35] D. Small,et al. Crystal structure of a mixed chain diacylglycerol, 1-stearoyl-3-oleyl-glycerol. , 1995, Journal of lipid research.
[36] K. Otsuji,et al. Dietary diacylglycerol-dependent reduction in serum triacylglycerol concentration in rats. , 1993, Annals of nutrition & metabolism.
[37] Kiyotaka Sato,et al. Polymorphism of POP and SOS III. Solvent crystallization of β2 and β1 polymorphs , 1989 .
[38] A. D. Vries. The Use of X-Ray Diffraction in the Study of Thermotropic Liquid Crystals With Rod-Like Molecules , 1985 .
[39] E. Lutton,et al. The Polymorphism of Saturated 1,3-Diglycerides , 1949 .