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Considerations in binding diblock copolymers on hydrophilic alginate beads for providing an immunoprotective membrane

机译:在亲水性藻酸盐微珠上结合二嵌段共聚物以提供免疫保护膜的考虑

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摘要

Alginate-based microcapsules are being proposed for treatment of many types of diseases. A major obstacle however in the successes is that these capsules are having large lab-to-lab variations. To make the process more reproducible, we propose to cover the surface of alginate capsules with diblock polymers that can form polymer brushes. In the present study, we describe the stepwise considerations for successful application of diblock copolymer of polyethylene glycol (PEG) and poly-l-lysine (PLL) on the surface of alginate beads. Special procedures had to be designed as alginate beads are hydrophilic and most protocols are designed for hydrophobic biomaterials. The successful attachment of diblock copolymer and the presence of PEG blocks on the surface of the capsules were studied by fluorescence microscopy. Longer time periods, that is, 30–60 min, are required to achieve saturation of the surface. The block lengths influenced the strength of the capsules. Shorter PLL blocks resulted in less stable capsules. Adequate permeability of the capsules was achieved with poly(ethylene glycol)-block-poly(l-lysine hydrochloride) (PEG454-b-PLL100) diblock copolymers. The capsules were a barrier for immunoglobulin G. The PEG454-b-PLL100 capsules have similar mechanical properties as PLL capsules. Minor immune activation of nuclear factor κB in THP-1 monocytes was observed with both PLL and PEG454-b-PLL100 capsules prepared from purified alginate. Our results show that we can successfully apply block copolymers on the surface of hydrophilic alginate beads without interfering with the physicochemical properties.
机译:基于藻酸盐的微胶囊被提议用于治疗多种类型的疾病。然而,成功的主要障碍是这些胶囊的实验室差异很大。为了使该过程更具可重复性,我们建议用可以形成聚合物刷的二嵌段聚合物覆盖藻酸盐胶囊的表面。在本研究中,我们描述了在藻酸盐珠粒表面成功应用聚乙二醇(PEG)和聚-1-赖氨酸(PLL)的二嵌段共聚物的逐步考虑。由于藻酸盐珠是亲水性的,因此必须设计特殊的程序,并且大多数规程是针对疏水性生物材料设计的。通过荧光显微镜研究了二嵌段共聚物的成功附着和胶囊表面上PEG嵌段的存在。要使表面达到饱和,需要更长的时间,即30-60分钟。块的长度影响了胶囊的强度。较短的PLL块导致胶囊的稳定性降低。用聚(乙二醇)-嵌段-聚(1-赖氨酸盐酸盐)(PEG454-b-PLL100)二嵌段共聚物获得足够的胶囊渗透性。胶囊是免疫球蛋白G的屏障。PEG454-b-PLL100胶囊的机械性能与PLL胶囊相似。用纯化的藻酸盐制备的PLL和PEG454-b-PLL100胶囊均观察到THP-1单核细胞中核因子κB的轻微免疫激活。我们的结果表明,我们可以成功地将嵌段共聚物应用于亲水性藻酸盐微珠的表面,而不会影响其理化性质。

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