Hindmarsh Jason P, Su Jiahong, Flanagan John, Singh Harjinder
Riddet Centre, Massey University, Private Bag 11 222, Palmerston North, New Zealand.
Langmuir. 2005 Sep 27;21(20):9076-84. doi: 10.1021/la051626b.
Presented is a novel application of pulsed field gradient (PFG)-NMR to the analysis of intercompartment exchange and the inner compartment droplet size distribution of a W/O/W multiple emulsion. The method involves monitoring the diffusional behavior of different components of the emulsion. Pfeuffer et al. Pfeuffer, J.; Flogel, U.; Dreher, W.; Leibfritz, D. NMR Biomed. 1998, 11(1), 19-31. and Price et al. Price, W. S.; Barzykin, A. V.; Hayamizu, K.; Tachiya, M. Biophys. J. 1998, 74(5), 2259-2271. proposed methods to extend Kärger's PFG-NMR model of exchange between two compartments to accommodate spherical inner compartments. Each model enables the prediction of the oil membrane permeability, the inner compartment volume fraction, and a representation of the inner compartment droplet size distribution. The models were fitted to PFG-NMR experimental data of W/O/W emulsions. The Pfeuffer et al. model provided the best description of the observed experimental data. Predicted values of permeability and swelling were consistent with those reported in the literature for W/O/W emulsions. The addition of sorbitol to either the inner or outer water compartment resulted in an increase in the oil membrane permeability. Inner compartment droplet size distribution measurements indicate that swelling, rupture, and coalescence are likely to have occurred during the secondary emulsification and emulsion ripening. In its present form, the method still constitutes a fast, noninvasive (no addition of a tracer), and in situ method for comparative analysis of the permeability, stability, and yield of different formulations of multiple emulsions with a single PFG-NMR experiment.
本文介绍了脉冲场梯度(PFG)-核磁共振在分析W/O/W多重乳液的隔室间交换和内相液滴尺寸分布方面的新应用。该方法涉及监测乳液不同成分的扩散行为。Pfeuffer等人Pfeuffer, J.; Flogel, U.; Dreher, W.; Leibfritz, D. NMR Biomed. 1998, 11(1), 19 - 31.以及Price等人Price, W. S.; Barzykin, A. V.; Hayamizu, K.; Tachiya, M. Biophys. J. 1998, 74(5), 2259 - 2271.提出了将Kärger的两隔室间交换的PFG-核磁共振模型扩展以适应球形内相的方法。每个模型都能够预测油膜渗透率、内相体积分数以及内相液滴尺寸分布的表示。这些模型被拟合到W/O/W乳液的PFG-核磁共振实验数据。Pfeuffer等人的模型对观察到的实验数据提供了最佳描述。渗透率和溶胀的预测值与文献中报道的W/O/W乳液的值一致。向内相或外相水相中添加山梨醇会导致油膜渗透率增加。内相液滴尺寸分布测量表明,在二次乳化和乳液成熟过程中可能发生了溶胀、破裂和聚结。就其目前的形式而言,该方法仍然是一种快速、非侵入性(不添加示踪剂)且原位的方法,可通过单个PFG-核磁共振实验对不同配方的多重乳液的渗透率、稳定性和产率进行比较分析。