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Preparation of uniform and large sized agarose microspheres by an improved membrane emulsification technique

机译:改进的膜乳化技术制备均匀大尺寸琼脂糖微球

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The SPG (Shirasu porous-glass) membrane emulsification technique has been subject to much attention for the preparation of uniform emulsions. However, so far primarily used for the production of droplets with sizes below approximately 60 μm. A production bottleneck occurred if the desired size was further increased, especially when highly viscous dispersed phases were involved. To this end, an improved membrane emulsification technique was proposed and has been applied to the preparation of large agarose microspheres, with a size of around 90 μm and with a narrow size distribution. The effects of important emulsification parameters/including the pore size of the SPG membrane, the operating pressure, the stirring rate of the continuous phase, the composition of the continuous oil phase, and the concentration of agarose in the dispersed water phase, have been extensively studied. Under optimum conditions, uniform-size agarose microspheres with an average diameter of 93 μm and a size distribution index of 0.65 were successfully prepared. The average particle size of the home-made agarose microspheres was almost identical to that of the commercial product Sepharose 4 Fast Row (4FF), which is produced by mechanical stirring and an additional sieving process. However, the size distribution of the former was much narrower than that of the latter. Therefore, the improved membrane emulsification technique presented here is promising for the application of high viscosity systems such as agarose solutions, and the production scale can be further enhanced by increasing the number of membrane units attached to the experimental apparatus. KSPG membrane emulsification technique;; Agarose microspheres;; Urge size;; Uniformity
机译:SPG(Shirasu多孔玻璃)膜乳化技术在制备均匀乳液方面受到了广泛关注。但是,到目前为止,主要用于生产尺寸小于约60μm的液滴。如果进一步增加所需尺寸,特别是当涉及到高粘度分散相时,就会产生生产瓶颈。为此,提出了一种改进的膜乳化技术,该技术已用于制备尺寸约为90μm且粒径分布较窄的大型琼脂糖微球。重要的乳化参数/包括SPG膜的孔径,操作压力,连续相的搅拌速率,连续油相的组成以及分散水相中琼脂糖的浓度的影响已得到广泛的应用研究。在最佳条件下,成功制备了平均粒径为93μm,粒径分布指数为0.65的均一大小的琼脂糖微球。自制的琼脂糖微球的平均粒径几乎与商业产品Sepharose 4 Fast Row(4FF)的粒径相同,后者通过机械搅拌和额外的筛分过程生产。但是,前者的尺寸分布比后者的要窄得多。因此,本文提出的改进的膜乳化技术对于诸如琼脂糖溶液之类的高粘度体系的应用是有前途的,并且通过增加连接至实验装置的膜单元的数量可以进一步提高生产规模。 K SPG膜乳化技术;琼脂糖微球;加大尺寸;均匀度

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