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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Water-compatible surface-imprinted microspheres for high adsorption and selective recognition of peptide drug from aqueous media
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Water-compatible surface-imprinted microspheres for high adsorption and selective recognition of peptide drug from aqueous media

机译:与水相容的表面印迹微球,可从水性介质中高度吸附和选择性识别肽类药物

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摘要

Novel water-compatible ionic liquid-functionalized microspheres with molecularly imprinted shell layer were controllably synthesized via precipitation polymerization and surface imprinting technique. Here, a room-temperature ionic liquid was synthesized to prepare these surface-imprinted microspheres with excellent water solubility and multiple binding sites with template molecules. The peptide drug thymopentin (TP5) was chosen as a template molecule, which is known as an immunomodulating agent. The as-prepared microspheres were fully characterized. Results reveal that ionic liquid incorporation significantly improves the adsorption of TP5. Moreover, the adsorption property and recognition capability towards TP5 are closely related to the synergetic effect of electrostatic interaction and hydrogen bonding. Through employing the synergetic effect of directional and non-directional interactions, the surface-imprinted microspheres exhibit high adsorption capacity, good selective recognition, and rapid binding ability for TP5. The surface-imprinted microspheres demonstrate potential usage for TP5 enrichment from other biomolecules, and the proposed method was successfully applied for TP5 determination in thymopentin injection and urine.
机译:通过沉淀聚合和表面印迹技术可控制地合成了具有分子印迹壳层的新型水溶性离子液体官能化微球。在此,合成室温离子液体以制备具有优异的水溶性和与模板分子的多个结合位点的这些表面印迹的微球。肽药物胸腺五肽(TP5)被选作模板分子,被称为免疫调节剂。所制备的微球已得到充分表征。结果表明,离子液体的引入显着改善了TP5的吸附。此外,对TP5的吸附性能和识别能力与静电相互作用和氢键的协同效应密切相关。通过利用定向和非定向相互作用的协同效应,表面印迹的微球表现出高吸附能力,良好的选择性识别能力和对TP5的快速结合能力。表面印记的微球展示了从其他生物分子中富集TP5的潜在用途,并且该方法成功地用于胸腺五肽注射液和尿液中TP5的测定。

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