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具有可重复使用模板的分子印迹聚合物纳米颗粒的固相合成——“塑料抗体”

Solid-Phase Synthesis of Molecularly Imprinted Polymer Nanoparticles with a Reusable Template - "Plastic Antibodies".

作者信息

Poma Alessandro, Guerreiro Antonio, Whitcombe Michael J, Piletska Elena V, Turner Anthony P F, Piletsky Sergey A

机构信息

Cranfield Health, Vincent Building, Cranfield University, Cranfield, Bedfordshire, MK43 0AL (UK).

出版信息

Adv Funct Mater. 2013 Jun 13;23(22):2821-2827. doi: 10.1002/adfm.201202397.

Abstract

Molecularly Imprinted Polymers (MIPs) are generic alternatives to antibodies in sensors, diagnostics and separations. To displace biomolecules without radical changes in infrastructure in device manufacture, MIPs should share their characteristics (solubility, size, specificity and affinity, localized binding domain) whilst maintaining the advantages of MIPs (low-cost, short development time and high stability) hence the interest in MIP nanoparticles. Herein we report a reusable solid-phase template approach (fully compatible with automation) for the synthesis of MIP nanoparticles and their precise manufacture using a prototype automated UV photochemical reactor. Batches of nanoparticles (30-400 nm) with narrow size distributions imprinted with: melamine (d = 60 nm, = 6.3 × 10 m), vancomycin (d = 250 nm, = 3.4 × 10 m), a peptide (d = 350 nm, = 4.8 × 10 m) and proteins have been produced. Our instrument uses a column packed with glass beads, bearing the template. Process parameters are under computer control, requiring minimal manual intervention. For the first time we demonstrate the reliable re-use of molecular templates in the synthesis of MIPs (≥ 30 batches of nanoMIPs without loss of performance). NanoMIPs are produced template-free and the solid-phase acts both as template and affinity separation medium.

摘要

分子印迹聚合物(MIPs)是传感器、诊断和分离领域中抗体的通用替代品。为了在设备制造中不彻底改变基础设施的情况下替代生物分子,MIPs应具备与生物分子相同的特性(溶解性、尺寸、特异性和亲和力、局部结合域),同时保持MIPs的优势(低成本、开发时间短和高稳定性),因此人们对MIP纳米颗粒产生了兴趣。在此,我们报告了一种可重复使用的固相模板方法(与自动化完全兼容),用于合成MIP纳米颗粒,并使用原型自动化紫外光化学反应器对其进行精确制造。已制备出了一批尺寸分布窄的纳米颗粒(30 - 400 nm),这些纳米颗粒分别以三聚氰胺(d = 60 nm, = 6.3 × 10 m)、万古霉素(d = 250 nm, = 3.4 × 10 m)、一种肽(d = 350 nm, = 4.8 × 10 m)和蛋白质为模板进行了印迹。我们的仪器使用填充有玻璃珠并负载模板的柱子。工艺参数由计算机控制,只需极少的人工干预。我们首次证明了分子模板在MIPs合成中可可靠地重复使用(≥ 30批纳米MIPs且性能无损失)。纳米MIPs是在无模板的情况下生产的,固相既作为模板又作为亲和分离介质。

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