Wakisaka Satoshi, Nakanishi Masami, Gohtani Shoichi
Department of Food Science, The United Graduate School of Agricultural Sciences, Ehime University.
J Oleo Sci. 2014;63(3):229-37. doi: 10.5650/jos.ess13139. Epub 2014 Feb 13.
It is reported that mixing polyglycerol polyricinoleate (PGPR) and polyglycerol laurilester has a great emulsifying capacity, and consequently fine oil-in-water (o/w) emulsions can be formed. However, the role of PGPR is not clear. The objective of this research is to investigate the phase behavior of vegetable oil/mixture of PGPR and polyglycerol fatty acid ester/water systems, and to clarify the role of PGPR in making a fine emulsion. Phase diagrams were constructed to elucidate the optimal process for preparing fine emulsions. In all the systems examined in this study, the phases, including the liquid crystal phase (L(c)) and sponge phase (L(3)), spread widely in the phase diagrams. We examined droplet size of the emulsions prepared from each phase and found that o/w nano-emulsions with droplet sizes as small as 50 nm were formed by emulsifying either from a single L(3) phase or a two-phase region, L(c) + L(3). These results indicate that a sponge phase L(3) or liquid crystal phase L(c) or both is necessary to form an o/w nano-emulsion whose average droplet diameter is less than 50 nm for PGPR and polyglycerin fatty acid ester mixtures used as surfactant.
据报道,聚甘油聚蓖麻醇酸酯(PGPR)与聚甘油月桂酸酯混合具有很强的乳化能力,因此可以形成良好的水包油(o/w)乳液。然而,PGPR的作用尚不清楚。本研究的目的是研究植物油/PGPR与聚甘油脂肪酸酯的混合物/水体系的相行为,并阐明PGPR在制备精细乳液中的作用。构建相图以阐明制备精细乳液的最佳工艺。在本研究中考察的所有体系中,液晶相(L(c))和海绵相(L(3))等相在相图中广泛分布。我们考察了由各相制备的乳液的液滴尺寸,发现通过从单一的L(3)相或两相区域L(c)+L(3)进行乳化可形成液滴尺寸小至50nm的o/w纳米乳液。这些结果表明,对于用作表面活性剂的PGPR和聚甘油脂肪酸酯混合物,海绵相L(3)或液晶相L(c)或两者对于形成平均液滴直径小于50nm的o/w纳米乳液是必要的。