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Shape-controlled production of alginate hydrogel-poly-L-lysine microcapsules based on electrodeposition method: Shape-controlled microcapsules

机译:基于电沉积方法的藻酸盐水凝胶-聚-L-赖氨酸微胶囊的形状控制生产:形状控制的微胶囊

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In this study, we describe a novel method of fabricating shape-controlled calcium alginate gel microcapsules. Alginate-poly-L-lysine (PLL) hydrogel microcapsules with predefined shapes were constructed based on electrodeposition method. Firstly, electrolysis of water in alginate solutions with calcium carbonate particles induced alginate gelation on micro-patterned electrode to form 2D gel structures. Then, these structures will be detached from the electrode surface and treated with the alginate-PLL microcapsules system. By passive control based on the micro-pattern geometric confinement and electrodeposition parameters, we succeeded in producing calcium alginate-PLL microcapsules with diverse shapes (such as sphere rod and cubic). The shape and size of the calcium alginate microcapsules could be tuned by adjusting the geometric design of micro-pattern on electrode and the apply voltage of electrodepostion. The preparation conditions of size- and shape-controlled calcium alginate-PLL microcapsules and influence factors were studied. This proposed method can lead to more accurate and creative studies of fabricating biocompatibility scaffold for tissue engineering.
机译:在这项研究中,我们描述了一种制造形状受控的藻酸钙凝胶微胶囊的新方法。基于电沉积法构建了具有预定形状的藻酸盐-聚-L-赖氨酸(PLL)水凝胶微胶囊。首先,用碳酸钙颗粒电解藻酸盐溶液中的水会导致藻酸盐在微图案化电极上凝胶化,从而形成2D凝胶结构。然后,这些结构将从电极表面脱离,并用藻酸盐-PLL微胶囊系统处理。通过基于微模式几何限制和电沉积参数的被动控制,我们成功生产了具有多种形状(例如球棒和立方)的海藻酸钙-PLL微胶囊。海藻酸钙微胶囊的形状和大小可以通过调节电极上微图案的几何设计和电极桩的施加电压来调节。研究了大小可控的藻酸钙-PLL微胶囊的制备条件及影响因素。该提议的方法可以导致更精确和创造性的研究,以制造用于组织工程的生物相容性支架。

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