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Encapsulation of Micro- and Milli-Sized Particles with a Hollow-Type Spherical Bacterial Cellulose Gel via Particle-Preloaded Droplet Cultivation

机译:通过颗粒预加载的液滴栽培用中空型球形细菌纤维素凝胶封装微型和毫米粒子颗粒

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摘要

A hollow-type spherical bacterial cellulose (HSBC) gel prepared using conventional methods cannot load particles larger than the pore size of the cellulose nanofiber network of bacterial cellulose (BC) gelatinous membranes. In this study, we prepared a HSBC gel encapsulating target substances larger than the pore size of the BC gelatinous membranes using two encapsulating methods. The first method involved producing the BC gelatinous membrane on the surface of the core that was a spherical alginate gel with a diameter of 2 to 3 mm containing the target substances. With this method, the BC gelatinous membrane was biosynthesized using Gluconacetobacter xylinus at the interface between the cell suspension attached onto the alginate gel and the silicone oil. The second method involved producing the BC gel membrane on the interface between the silicone oil and cell suspension, as well as the spherical alginate gel with a diameter of about 1 mm containing target substances. After the BC gelatinous membrane was biosynthesized, an alginate gel was dissolved in a phosphate buffer to prepare an HSBC gel with the target substances. These encapsulated substances could neither pass through the BC gelatinous membrane of the HSBC gel nor leak from the interior space of the HSBC gel. These results suggest that the HSBC gel had a molecular sieving function. The HSBC gel walls prepared using these methods were observed to be uniform and would be useful for encapsulating bioactive molecules, such as immobilized enzymes in HSBC gel, which is expected to be used as a drug carrier.
机译:使用常规方法制备的中空型球形细菌纤维素(HSBC)凝胶不能将颗粒大于细菌纤维素(BC)凝胶状膜的纤维素纳米恐怖网络的孔径。在这项研究中,我们使用两种包封方法制备了含有比BC凝胶状膜的孔径大的丙虫凝胶封装靶物质。第一种方法涉及在芯的表面上产生BC凝胶状膜,其是球形藻酸盐凝胶,其直径为含有目标物质的直径为2至3mm。利用这种方法,使用葡聚糖杆菌木聚糖在连接到藻酸盐凝胶和硅油之间的细胞悬浮液之间的界面处生物合成BC凝胶状膜。第二种方法涉及在硅油和细胞悬浮液之间产生BC凝胶膜的界面,以及含有约1mM的靶物质的球形藻酸盐凝胶。在生物合成BC凝胶状膜之后,将藻酸盐凝胶溶于磷酸盐缓冲液中以制备含有靶物质的HSBC凝胶。这些包封的物质既不能通过HSBC凝胶的BC凝胶状膜也不能从HSBC凝胶的内部空间泄漏。这些结果表明HSBC凝胶具有分子筛分功能。观察使用这些方法制备的HSBC凝胶壁是均匀的,可用于包封的生物活性分子,例如在HSBC凝胶中的固定化酶,这预期用作药物载体。

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