首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Spherical phospholipid polymer hydrogels for cell encapsulation prepared with a flow-focusing microfluidic channel device
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Spherical phospholipid polymer hydrogels for cell encapsulation prepared with a flow-focusing microfluidic channel device

机译:用流动聚焦微流体通道装置制备的用于细胞包封的球形磷脂聚合物水凝胶

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摘要

To prepare spherical polymer hydrogels, we used a flow-focusing microfluidic channel device for mixing aqueous solutions of two water-soluble polymers. Continuous encapsulation of cells in the hydrogels was also examined. The polymers were bioinspired 2-methacryloyloxyethyl phosphorylcholine polymer bearing phenyl boronic acid groups (PMBV) and poly(vinyl alcohol) (PVA), which spontaneously form a hydrogel in aqueous medium via specific molecular complexation upon mixing, even when they were in cell culture medium. The microfluidic device was prepared with polydimethylsiloxan, and the surface of the channel was treated with fluoroalkyl compound to prevent sticking of the polymers on the surface. The microfluidic channel process could control the diameter of the spherical hydrogels in the range of 30-90 μm and generated highly monodispersed diameter spherical hydrogels. We found that the polymer distribution in the hydrogel was influenced by the PVA concentration and that the hydrogel could be dissociated by the addition of d-sorbitol to the suspension. The single cells could be encapsulated and remain viable in the hydrogels. The localized distribution of polymers in the hydrogel may provide an environment for modulating cell function. It is concluded that the spontaneous hydrogel formation between PMBV and PVA in the flow-focusing microfluidic channel device is applicable for continuous preparation of a spherical hydrogel-encapsulating living cell.
机译:为了制备球形聚合物水凝胶,我们使用了流聚焦微流体通道装置来混合两种水溶性聚合物的水溶液。还检查了细胞在水凝胶中的连续包封。聚合物是带有苯基硼酸基团(PMBV)和聚乙烯醇(PVA)的生物启发型2-甲基丙烯酰氧基乙基磷酰胆碱聚合物,即使在细胞培养基中,它们在混合后也会通过特定的分子络合作用在水介质中自发形成水凝胶。 。用聚二甲基硅氧烷制成微流体装置,并用氟代烷基化合物处理通道的表面,以防止聚合物粘附在表面上。微流体通道过程可以将球形水凝胶的直径控制在30-90μm的范围内,并生成高度单分散的直径球形水凝胶。我们发现聚合物在水凝胶中的分布受PVA浓度的影响,并且可以通过向悬浮液中添加d-山梨糖醇来解离水凝胶。单个细胞可以被封装并且在水凝胶中保持活力。聚合物在水凝胶中的局部分布可提供调节细胞功能的环境。结论是,聚流微流体通道装置中PMBV和PVA之间的自发水凝胶形成可用于连续制备球形水凝胶包裹活细胞。

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