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Surface Permeability of Membrane and Catalytic Performance Based on Redox-Responsive of Hybrid Hollow Polymeric Microcapsules

机译:基于杂交中空聚合物微胶囊的氧化还原响应的膜和催化性能的表面渗透性

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摘要

“Smart” polymeric microcapsules with excellent permeability of membranes have drawn considerable attention in scientific and industrial research such as drug delivery carriers, microreactors, and artificial organelles. In this work, hybrid hollow polymeric microcapsules (HPs) containing redox-active gold-sulfide bond were prepared with bovine serum albumin, inorganic metal cluster (AuNCs), and poly(N-isopropylacrylamide) conjugates by using Pickering emulsion method. HPs were transferred from water-in-oil to water-in-water by adding PEGbis(N-succinimidylsuccinate). To achieve redox-responsive membrane, the Au-S bond units incorporated into the microcapsules’ membranes, allowed us to explore the effects of a new stimuli, that is, the redox Au-S bond breaking on the microcapsules’ membranes. The permeability of these hybrid hollow polymeric microcapsules could be sensitively tuned via adding environment-friendly hydrogen peroxide (H2O2), resulting from a fast fracture of Au-S bond. Meanwhile, AuNCs and conjugates could depart from the microcapsules, and enhance the permeability of the membrane. Based on the excellent permeability of the membrane, phosphatase was encapsuled into HPs and p-nitrophenyl phosphate as a substrate. After adding 1 × 10−2 and 1 × 10−4 M H2O2, the catalytic efficiency was nearly 4.06 and 2.22 times higher than that of HPs in the absence of H2O2, respectively. Hence, the unique redox-responsive HPs have potential applications in biocatalytic reaction, drug delivery, and materials as well as in bioscience.
机译:“智能”聚合物微胶囊具有优异的膜渗透性,在科学和工业研究中具有相当大的关注,例如药物输送载体,微反应器和人造细胞器。在这项工作中,用牛血清白蛋白,无机金属聚类(Aunc)和聚(N-异丙基丙烯酰胺)缀合物用浓缩乳液法制备含氧化还原活性金 - 硫化物键的杂交中空聚合物微胶囊(HPS)。通过添加PEGBIS(N-琥珀酰亚胺基琥珀酸盐)将HPS从油状物转移到水中。为了实现氧化还原致氧膜,掺入微胶囊中的AU-S键单元使我们探讨了新的刺激的效果,即氧化还原AU-S粘合在微胶囊的膜上破裂。这些杂交中空聚合物微胶囊的渗透性可以通过加入环保型氢过氧化氢(H 2 O 2)来敏感地调节,由AU-S键的快速断裂引起。同时,Auncs和缀合物可以脱离微胶囊,增强膜的渗透性。基于膜的优异渗透性,磷酸酶被包封成HPS和P-硝基苯基磷酸盐作为底物。加入1×10-2和1×10-4m H 2 O 2后,催化效率分别在没有H2O2的情况下比HPS高的4.06%和2.22倍。因此,独特的氧化还原响应性HPS在生物催化反应,药物递送和材料以及生物科中具有潜在的应用。

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