Langmuir. 2019 Feb 5;35(5):1111-1118. doi: 10.1021/acs.langmuir.8b00878. Epub 2018 Jun 4.
Two types of zwitterionic polymer-modified magnetic nanoparticles (NPs) are fabricated by conjugating pSBMA onto PEI-precoated NPs via either a one-step method (1S NPs) or two-step method (2S NPs). For both methods, divinyl sulfone is used as the linker molecule. Although 1S NPs were capable of resisting both IgG and BSA, 2S NPs exhibited specificity toward IgG adsorption in complex biological fluids, e.g., in a mixture of serums and IgG. The moderate interactions ( K ≈ 1.2 μM) between IgG and 2S NPs are 3 orders of magnitude lower than IgG binding with protein A ( K 10 nM). Through complementary characterizations and analyses, we rationalize that the surface developed herein with IgG specificity contains two key components: polyzwitterions with a short chain length and sulfone groups with a high density.
两种两性离子聚合物修饰的磁性纳米粒子(NPs)是通过将 pSBMA 接枝到 PEI 预涂层 NPs 上来制备的,分别采用一步法(1S NPs)和两步法(2S NPs)。对于这两种方法,都使用了二乙烯砜作为连接分子。尽管 1S NPs 能够抵抗 IgG 和 BSA,但 2S NPs 在复杂的生物流体(例如血清和 IgG 的混合物)中表现出对 IgG 吸附的特异性。IgG 与 2S NPs 之间的中等相互作用(K≈1.2μM)比 IgG 与蛋白 A 的结合(K10 nM)低 3 个数量级。通过互补的表征和分析,我们推断出在此处开发的具有 IgG 特异性的表面包含两个关键组件:具有短链长度的聚两性离子和具有高密度的砜基。