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Investigations of cell immobilization in alginate: rheological and electrostatic extrusion studies

机译:海藻酸盐中细胞固定化的研究:流变和静电挤压研究

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In this study, the process of electrostatic extrusion as a method for cell immobilization was investigated. We have assessed the effects of concentrations of yeast cells (as a model cell type) and Na alginate on the size of the resulting microbeads and attempted to rationalize the obtained findings by theological characterization of the cell-alginate suspensions. Under the investigated conditions, microbeads, 50-600 mu m in diameter, were produced and the increase in both alginate and cell concentrations resulted in larger microbeads with their sizes having higher standard deviations. Rheological characterization revealed non-Newtonian, pseudoplastic behavior of cell-alginate suspensions with higher viscosities at higher alginate concentrations. However, the presence of cells even at high concentrations (5 x 10(8) and 1 x 10(9) cells mL(-1)) did not significantly affect the rheological properties of the Na alginate solution. Finally, we have investigated the kinetics of alginate gelation with respect to the quantity of Ca2+ ions and the presence of cells. The molar ratio of alpha-L-guluronic acid units to Ca2+ ions of 4:1 provided complete crosslinking. The presence of cells decreased the rate of network formation as well as the strength of the obtained Ca alginate hydrogel. (c) 2006 Society of Chemical Industry.
机译:在这项研究中,研究了静电挤出作为细胞固定方法的过程。我们已经评估了酵母细胞(作为模型细胞类型)和藻酸钠的浓度对所得微珠大小的影响,并试图通过细胞藻酸盐悬浮液的流变学特性合理化获得的发现。在研究的条件下,产生了直径为50-600微米的微珠,藻酸盐和细胞浓度的增加导致较大的微珠,其尺寸具有较高的标准偏差。流变学特征揭示了在藻酸盐浓度较高时具有较高粘度的细胞藻酸盐悬浮液的非牛顿假塑性行为。但是,即使存在高浓度细胞(5 x 10(8)和1 x 10(9)细胞mL(-1)),细胞的存在也不会显着影响藻酸钠溶液的流变性。最后,我们研究了藻酸盐胶凝动力学,涉及Ca2 +离子的量和细胞的存在。 α-L-古洛糖醛酸单元与Ca2 +离子的摩尔比为4:1,可实现完全交联。细胞的存在降低了网络形成的速率以及获得的藻酸钙水凝胶的强度。 (c)2006年化学工业协会。

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