DWI - Leibniz Institute for Interactive Materials, RWTH Aachen University , Forckenbeckstraße 50, 52076 Aachen, Germany.
Laboratory for Biomaterials Institute for Biotechnology and Helmholtz-Institute for Biomedical Engineering, RWTH Aachen University , Pauwelsstr. 20, 52074 Aachen, Germany.
Biomacromolecules. 2017 May 8;18(5):1460-1465. doi: 10.1021/acs.biomac.6b01754. Epub 2017 Apr 7.
Lectins are proteins with a well-defined carbohydrate recognition domain. Many microbial proteins such as bacterial toxins possess lectin or lectin-like binding domains to interact with cell membranes that are decorated with glycan recognition motifs. We report a straightforward way to prepare monodisperse and biocompatible polyethylene glycol microgels, which carry glycan motifs for specific binding to lectins. The sugar-functionalized colloids exhibit a wide mesh size and a highly accessible volume. The microgels are prepared via drop-based microfluidics combined with radical polymerization. GSII and ECL are used as model lectins that bind specifically to the corresponding carbohydrates, namely, GlcNAc and LacNAc. LacNAc microgels bind ECL with a high capacity and high affinity (K ≈ 0.5 to 1 μM), suggesting multivalent binding of the lectin to the LacNAc-decorated flexible microgel network. Glycan-functionalized microgels present a useful tool for lectin scavenging in biomedical applications.
凝集素是具有明确碳水化合物识别结构域的蛋白质。许多微生物蛋白,如细菌毒素,具有凝集素或凝集素样结合结构域,以与糖识别基序修饰的细胞膜相互作用。我们报告了一种简单的方法来制备单分散且生物相容的聚乙二醇微凝胶,这些微凝胶带有糖基识别基序,可与凝集素特异性结合。糖功能化胶体具有大的网格尺寸和高可及体积。微凝胶通过基于液滴的微流控技术与自由基聚合相结合制备而成。GSII 和 ECL 被用作模型凝集素,它们特异性地结合相应的碳水化合物,即 GlcNAc 和 LacNAc。LacNAc 微凝胶以高容量和高亲和力(K≈0.5 至 1 μM)结合 ECL,表明凝集素与 LacNAc 修饰的柔性微凝胶网络的多价结合。糖基化微凝胶为生物医学应用中的凝集素清除提供了一种有用的工具。