Effect of extraction pH and post-extraction heat treatment on the composition and interfacial properties of peanut oil bodies
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[1] Boye Liu,et al. Physicochemical and rheological properties of peanut oil body following alkaline pH treatment , 2021, LWT.
[2] J. Weiss,et al. Recent advances in the composition, extraction and food applications of plant-derived oleosomes , 2020 .
[3] Yapeng Fang,et al. Structure and tribology of κ-carrageenan gels filled with natural oil bodies , 2020 .
[4] R. Boom,et al. Efficient single-step rapeseed oleosome extraction using twin-screw press , 2020 .
[5] Yapeng Fang,et al. In situ nanomechanical properties of natural oil bodies studied using atomic force microscopy. , 2020, Journal of colloid and interface science.
[6] L. Yu,et al. The physicochemical properties and gastrointestinal fate of oleosomes from non-heated and heated soymilk , 2020 .
[7] Rongchun Wang,et al. The stability and gastro-intestinal digestion of curcumin emulsion stabilized with soybean oil bodies , 2020 .
[8] Yapeng Fang,et al. Improving the Stability of Oil Body Emulsions from Diverse Plant Seeds Using Sodium Alginate , 2019, Molecules.
[9] Qingzhe Jin,et al. Influence of Dairy Emulsifier Type and Lipid Droplet Size on Gastrointestinal Fate of Model Emulsions: In Vitro Digestion Study. , 2018, Journal of agricultural and food chemistry.
[10] Simone De Chirico,et al. Enhancing the recovery of oilseed rape seed oil bodies (oleosomes) using bicarbonate-based soaking and grinding media. , 2018, Food chemistry.
[11] J. V. Gruber,et al. In vitro examination of an oleosome-based sun protection product on the influence of UVB-induced inflammation markers in human epidermal skin equivalent tissue model. , 2018, Journal of photochemistry and photobiology. B, Biology.
[12] Zhiming Gao,et al. Effect of sodium alginate on the stability of natural soybean oil body emulsions , 2018, RSC advances.
[13] Y. Matsumura,et al. Interfacial and emulsifying properties of crude and purified soybean oil bodies , 2017 .
[14] Y. Hua,et al. Effects of pH on protein components of extracted oil bodies from diverse plant seeds and endogenous protease-induced oleosin hydrolysis. , 2016, Food chemistry.
[15] Frieder Mugele,et al. Hard and soft colloids at fluid interfaces: Adsorption, interactions, assembly & rheology. , 2015, Advances in colloid and interface science.
[16] C. V. Nikiforidis,et al. Composition, properties and potential food applications of natural emulsions and cream materials based on oil bodies , 2014 .
[17] Y. Hua,et al. The properties and the related protein behaviors of oil bodies in soymilk preparation , 2014, European Food Research and Technology.
[18] M. Bonn,et al. The role of intact oleosin for stabilization and function of oleosomes. , 2013, The journal of physical chemistry. B.
[19] C. V. Nikiforidis,et al. Effect of recovery methods on the oxidative and physical stability of oil body emulsions. , 2013, Food chemistry.
[20] A. Junghans,et al. Soy milk oleosome behaviour at the air-water interface. , 2012, Faraday discussions.
[21] Robert V Farese,et al. Lipid droplets and cellular lipid metabolism. , 2012, Annual review of biochemistry.
[22] Xiaoquan Yang,et al. Adsorption and dilatational rheology of heat-treated soy protein at the oil-water interface: relationship to structural properties. , 2012, Journal of agricultural and food chemistry.
[23] C. V. Nikiforidis,et al. Exploitation of maize germ for the preparation of a stable oil-body nanoemulsion using a combined aqueous extraction–ultrafiltration method , 2011 .
[24] G. Vaca-Medina,et al. Interfacial properties of oleosins and phospholipids from rapeseed for the stability of oil bodies in aqueous medium. , 2010, Colloids and surfaces. B, Biointerfaces.
[25] 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.
[26] M. Corredig,et al. Heat-induced changes in oil-in-water emulsions stabilized with soy protein isolate , 2009 .
[27] A. Martín-Molina,et al. Adsorption of soy protein isolate at air-water and oil-water interfaces , 2008 .
[28] D. Mcclements,et al. Extraction and characterization of oil bodies from soy beans: a natural source of pre-emulsified soybean oil. , 2007, Journal of agricultural and food chemistry.
[29] B. Swanson,et al. Modification of whey protein concentrate hydrophobicity by high hydrostatic pressure , 2005 .
[30] M. Meinders,et al. Quantitative description of the relation between protein net charge and protein adsorption to air-water interfaces. , 2005, The journal of physical chemistry. B.
[31] P. Laurent,et al. Lipids, Proteins, and Structure of Seed Oil Bodies from Diverse Species , 1993, Plant physiology.
[32] J. Tzen,et al. Characterization of the charged components and their topology on the surface of plant seed oil bodies. , 1992, The Journal of biological chemistry.
[33] J. Tzen,et al. Surface structure and properties of plant seed oil bodies , 1992, The Journal of cell biology.
[34] L. Tordai,et al. Time‐Dependence of Boundary Tensions of Solutions I. The Role of Diffusion in Time‐Effects , 1946 .