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首页> 外文期刊>Journal of Colloid and Interface Science >Preparation of uniform-sized agarose beads by microporous membrane emulsification technique
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Preparation of uniform-sized agarose beads by microporous membrane emulsification technique

机译:微孔膜乳化技术制备均一琼脂糖珠

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摘要

Uniform-sized agarose beads were prepared by membrane emulsification technique in this study. Agarose was dissolved in boiling water (containing 0.9% sodium chloride) and used as water phase. A mixture of liquid paraffin and petroleum ether containing 4 wt% of hexaglycerin penta ester (PO-500) emulsifier was used as oil phase. At 55 degrees C, the water phase permeated through uniform pores of microporous membrane into the oil phase by a pressure of nitrogen gas to form uniform W/O emulsion. Then the emulsion was cooled down to room temperature under gentle agitation to form gel beads. The effect of oil phase, emulsifier, especially temperature on the uniformity of the beads were investigated and interpreted from interfacial tension between water phase and oil phase. Under optimized condition, the coefficient variation (C.V.) showing the size distribution of the beads was under 15%. This was the first report to prepare uniform agarose beads by membrane emulsification, and to investigate the effect of temperature on the size distribution of the droplets and beads. The beads with different size can be prepared by using membranes with different pore size, and the result showed that there was a linear relationship between the average diameter of beads and pore size of the membranes; beads with diameter from 15 to 60 pro were able to obtain in this study. (C) 2007 Elsevier Inc. All rights reserved.
机译:通过膜乳化技术制备均匀大小的琼脂糖珠。琼脂糖溶于沸水(含0.9%氯化钠)中,用作水相。液体石蜡和石油醚的混合物(含4 wt%的六甘油五酯(PO-500)乳化剂)用作油相。在55℃下,水相在氮气压力下通过微孔膜的均匀孔渗透到油相中,从而形成均匀的W / O乳液。然后在缓慢搅拌下将乳液冷却至室温以形成凝胶珠。研究了油相,乳化剂,特别是温度对珠粒均匀性的影响,并从水相与油相之间的界面张力来解释。在最佳条件下,显示珠粒尺寸分布的系数变化(C.V.)在15%以下。这是第一个通过膜乳化制备均匀琼脂糖珠,并研究温度对液滴和珠尺寸分布的影响的报道。通过使用孔径不同的膜可以制备出不同大小的微珠,结果表明微珠的平均直径与膜的孔径呈线性关系。在这项研究中能够获得直径为15至60 pro的珠子。 (C)2007 Elsevier Inc.保留所有权利。

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