The Petroleum and Petrochemical College, Chulalongkorn University , Bangkok 10330, Thailand.
Center for Petroleum, Petrochemicals and Advanced Materials, Chulalongkorn University , Bangkok 10330, Thailand.
ACS Appl Mater Interfaces. 2017 Mar 29;9(12):10398-10407. doi: 10.1021/acsami.6b14676. Epub 2017 Mar 14.
Magnetic polymeric nanoparticles can be used for selective binding in a magnetic field. However, as the magnetic nanoparticles (MAG) are stabilized with polymers, the separation of the MAG from the polymer chains after use is difficult. This work proposes a combination of a thermoresponsive polymer with MAG allows for the as-desired simple removal of MAG from the polymer chains. For this, chitosan (CS) was conjugated with thermoresponsive poly(N-isopropylacrylamide) (PNIPAM) and antibody (Ab) together with the physisorbed MAG as a thermo-magneto dual functional material. The key synthesis steps are (i) radical polymerization of NIPAM in the presence of mercaptoacetic acid so that the PNIPAM obtained contains terminal carboxylic acid groups (PNIPAM-COOH), (ii) the CS-N-hydroxysuccinamide water-based system that allows conjugation of CS with PNIPAM-COOH in water at room temperature, and (iii) the weak interaction between MAG and the CS chain. As a model application, CS is conjugated with the antirecombinant Leptospirosis Ab (rLipL32) to allow the selective binding and collection of the target antigen under the dual functions. This is the first demonstration of a simple but effective solution for MAG exclusion from the target molecules and will be practical for diverse applications, such as diagnosis, sensors, filtration, etc.
磁性高分子纳米粒子可以在磁场中用于选择性结合。然而,由于磁性纳米粒子(MAG)与聚合物稳定,因此在使用后从聚合物链中分离 MAG 是困难的。这项工作提出了将温敏聚合物与 MAG 结合使用,可以实现从聚合物链中简单去除 MAG 的期望。为此,壳聚糖(CS)与温敏聚(N-异丙基丙烯酰胺)(PNIPAM)和抗体(Ab)一起被共轭,并与物理吸附的 MAG 一起作为热磁双功能材料。关键的合成步骤是:(i)在巯基乙酸的存在下进行 NIPAM 的自由基聚合,使得到的 PNIPAM 含有末端羧酸基团(PNIPAM-COOH);(ii)CS-N-羟基琥珀酰亚胺水基体系,允许 CS 与 PNIPAM-COOH 在室温下在水中进行共轭;(iii)MAG 与 CS 链之间的弱相互作用。作为模型应用,CS 与抗重组钩端螺旋体 Ab(rLipL32)共轭,允许在双重功能下选择性结合和收集目标抗原。这是首次证明从目标分子中简单而有效地去除 MAG 的解决方案,将在诊断、传感器、过滤等各种应用中具有实际意义。