Nolte Marc, Fery Andreas
Max-Planck Institute of Colloids and Interfaces, Golm D-14476, Germany.
IEEE Trans Nanobioscience. 2004 Mar;3(1):22-6. doi: 10.1109/tnb.2004.824256.
We use microcontact printing (microCP) of polyelectrolytes (PEs) onto flat substrates for creating surfaces with regions of negative and positive surface charge. Subsequent incubation of these surfaces with solutions containing hollow PE capsules leads to preferential adsorption of the capsules on regions of opposite charge, while regions of like charge are passivated against adhesion. As well, adsorption of fluorescently labeled PEs is found to be directed toward oppositely charged regions at neutral pH. This approach could lead to novel functional surfaces for combinatorial chemistry or sensor applications and could also be expanded toward cell immobilization.
我们将聚电解质(PEs)微接触印刷(microCP)到平面基板上,以创建具有负表面电荷和正表面电荷区域的表面。随后,将这些表面与含有中空PE胶囊的溶液一起孵育,会导致胶囊优先吸附在相反电荷的区域,而相同电荷的区域则不会发生吸附。此外,发现在中性pH条件下,荧光标记的PEs的吸附会指向带相反电荷的区域。这种方法可能会产生用于组合化学或传感器应用的新型功能表面,也可以扩展到细胞固定化领域。