State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing, China.
Nat Protoc. 2017 May;12(5):964-987. doi: 10.1038/nprot.2017.015. Epub 2017 Apr 6.
Molecularly imprinted polymers (MIPs) are materials that are designed to be receptors for a template molecule (e.g., a protein). They are made by polymerizing the polymerizable reagents in the presence of the template; when the template is removed, the material can be used for many applications that would traditionally use antibodies. Thus, MIPs are biomimetic of antibodies and in this capacity have found wide applications, such as sensing, separation and diagnosis. However, many imprinting approaches are uncontrollable, and facile imprinting approaches widely applicable to a large variety of templates remain limited. We developed an approach called boronate affinity controllable-oriented surface imprinting, which allows for easy and efficient preparation of MIPs specific to glycoproteins, glycans and monosaccharides. This approach relies on immobilization of a template (glycoprotein, glycan or monosaccharide) on a boronic-acid-functionalized substrate through boronate affinity interaction, followed by self-polymerization of biocompatible monomer(s) to form an imprinting layer on the substrate with appropriate thickness. Imprinting in this approach is performed in a controllable manner, permitting the thickness of the imprinting layer to be fine-tuned according to the molecular size of the template by adjusting the imprinting time. This not only simplifies the imprinting procedure but also makes the approach widely applicable to a large range of sugar-containing biomolecules. MIPs prepared by this approach exhibit excellent binding properties and can be applied to complex real samples. The MIPs prepared by this protocol have been used in affinity separation, disease diagnosis and bioimaging. The entire protocol, including preparation, property characterization and performance evaluation, takes ∼3-8 d, depending on the type of substrate and template used.
分子印迹聚合物(MIPs)是一类设计用于作为模板分子(例如蛋白质)的受体的材料。它们是通过在模板存在下聚合可聚合试剂而制成的;当模板被去除时,该材料可以用于许多传统上使用抗体的应用。因此,MIPs 模拟了抗体,并且在这些应用中已经找到了广泛的应用,例如传感、分离和诊断。然而,许多印迹方法是不可控的,并且广泛适用于各种模板的简便印迹方法仍然有限。我们开发了一种称为硼酸亲和可控表面印迹的方法,该方法允许轻松高效地制备针对糖蛋白、聚糖和单糖的 MIPs。该方法依赖于通过硼酸亲和相互作用将模板(糖蛋白、聚糖或单糖)固定在硼酸功能化的基底上,然后自聚合生物相容性单体以在基底上形成具有适当厚度的印迹层。在这种方法中,印迹以可控的方式进行,通过调整印迹时间可以根据模板的分子大小精细调整印迹层的厚度。这不仅简化了印迹程序,而且使该方法广泛适用于各种含糖类生物分子。通过这种方法制备的 MIPs 表现出优异的结合性能,并可应用于复杂的实际样品。通过该方案制备的 MIPs 已用于亲和分离、疾病诊断和生物成像。整个方案,包括制备、性能表征和性能评估,需要 3-8 天,具体取决于使用的基底和模板的类型。