Nakaya Kyoko, Ushio Hideki, Matsukawa Shingo, Shimizu Masataka, Ohshima Toshiaki
Department of Food Science and Technology, Tokyo University of Marine Science and Technology, Konan 4, Minato, Tokyo 108-8477, Japan.
Lipids. 2005 May;40(5):501-7. doi: 10.1007/s11745-005-1410-4.
The effects of droplet size and emulsifiers on oxidative stability of polyunsaturated TAG in oil-in-water (o/w) emulsions with droplet sizes of 0.806 +/- 0.0690, 3.28 +/- 0.0660, or 10.7 +/- 0.106 microm (mean +/- SD) were investigated. Hydroperoxide contents in the emulsion with a mean droplet size of 0.831 microm were significantly lower than those in the emulsion with a mean droplet size of 12.8 microm for up to 120 h of oxidation time. Residual oxygen contents in the headspace air of the vials containing an o/w emulsion with a mean droplet size of 0.831 microm were lower compared with those of the emulsion with a mean droplet size of 12.8 microm. Hexanal developed from soybean oil TAG o/w emulsions with smaller droplet size showed significantly lower residual oxygen contents than those of the larger droplet size emulsions. Consequently, oxidative stability of TAG in o/w emulsions could be controlled by the size of oil droplet even though the origins of TAG were different. Spin-spin relaxation time of protons of acyl residues on TAG in o/w emulsions measured by H NMR suggested that motional frequency of some acyl residues was shorter in o/w emulsions with a smaller droplet size. The effect of the wedge associated with hydrophobic acyl residues of emulsifiers was proposed as a possible mechanism to explain differences in oxidative stability between o/w emulsions with different droplet sizes.
研究了液滴大小和乳化剂对水包油(o/w)乳液中多不饱和甘油三酯(TAG)氧化稳定性的影响,该乳液的液滴大小分别为0.806±0.0690、3.28±0.0660或10.7±0.106微米(平均值±标准差)。在长达120小时的氧化时间内,平均液滴大小为0.831微米的乳液中的氢过氧化物含量显著低于平均液滴大小为12.8微米的乳液中的氢过氧化物含量。与平均液滴大小为12.8微米的乳液相比,含有平均液滴大小为0.831微米的o/w乳液的小瓶顶空空气中的残余氧含量更低。由较小液滴大小的大豆油TAG o/w乳液产生的己醛显示出的残余氧含量明显低于较大液滴大小的乳液。因此,即使TAG的来源不同,o/w乳液中TAG的氧化稳定性也可以通过油滴大小来控制。通过核磁共振氢谱(H NMR)测量的o/w乳液中TAG上酰基残基质子的自旋-自旋弛豫时间表明,在较小液滴大小的o/w乳液中,一些酰基残基的运动频率较短。提出了与乳化剂疏水酰基残基相关的楔形效应,作为解释不同液滴大小的o/w乳液氧化稳定性差异的一种可能机制。