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Preparation of gelatin microbeads with a narrow size distribution using microchannel emulsification

机译:使用微通道乳化法制备窄尺寸分布的明胶微珠

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摘要

The purpose of this study was to prepare monodisperse gelatin microcapsules containing an active agent using microchannel (MC) emulsification, a novel technique for preparing water-in-oil (W/O) and oil-in-water (O/W) emulsions. As the first step in applying MC emulsification to the preparation of monodisperse gelatin microcapsules, simple gelatin microbeads were prepared using this technique. A W/O emulsion with a narrow size distribution containing gelatin in the aqueous phase was created as follows. First, the aqueous disperse phase was fed into the continuous phase through the MCs at 40°C (operating pressure: 3.9 kPa). The emulsion droplets had an average particle diameter of 40.7 μm and a relative standard deviation of 5.1%. The temperature of the collected emulsion was reduced and maintained at 25°C overnight. The gelatin microbeads had a smooth surface after overnight gelation; the average particle diameter was calculated to be 31.6 μm, and the relative standard deviation, 7.3%. The temperature was then lowered to 5°C by rapid air cooling and finally dried. The gelatin beads were dried and could be resuspended well in iso-octane. The had an average particle diameter of 15.6 μm, and a relative standard deviation of 5.9%. Using MC emulsification, we were able to prepare gelatin microbeads with a narrow size distribution. Since this emulsification technique requires only a low-energy input, it may create desirable experimental conditions for microencapsulation of unstable substances such as peptides and proteins. This method is promising for making monodisperse microbeads.
机译:这项研究的目的是使用微通道(MC)乳化法制备包含活性剂的单分散明胶微胶囊,这是一种制备油包水(W / O)和水包油(O / W)乳液的新技术。作为将MC乳化应用于单分散明胶微胶囊制备的第一步,使用该技术制备了简单的明胶微珠。如下制备具有窄尺寸分布的W / O乳液,其在水相中含有明胶。首先,在40℃(操作压力:3.9kPa)下通过MC将水分散相进料到连续相中。乳液液滴的平均粒径为40.7μm,相对标准偏差为5.1%。降低收集的乳液的温度,并保持在25℃过夜。过夜胶凝后,明胶微珠表面光滑;平均粒径为31.6μm,相对标准偏差为7.3%。然后通过快速空气冷却将温度降低至5℃,并最终干燥。将明胶珠干燥并可以很好地重悬于异辛烷中。其具有15.6μm的平均粒径,和5.9%的相对标准偏差。使用MC乳化,我们能够制备具有窄尺寸分布的明胶微珠。由于这种乳化技术仅需要低能量输入,因此可以为微囊化不稳定的物质(如肽和蛋白质)创造理想的实验条件。该方法有望用于制备单分散微珠。

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