Preparation of bacteria microarray using selective patterning of polyelectrolyte multilayer and poly(ethylene glycol)-poly(lactide) diblock copolymer

被引:0
|
作者
Chang-Hyung Choi
Ji-Hye Lee
Taek-Sung Hwang
Chang-Soo Lee
Yun-Gon Kim
Yung-Hun Yang
Kang Moo Huh
机构
[1] Chungnam National University,Department of Chemical Engineering
[2] Brigham and Women’s Hospital,Department of Medicine
[3] Harvard Medical School,Department of Microbial Engineering
[4] Konkuk University,Department of Polymer Science and Engineering
[5] Chungnam National University,undefined
来源
Macromolecular Research | 2010年 / 18卷
关键词
poly(ethylene glycol)-poly(actide) copolymer (PEG-PLA); polyelectrolyte multilayers (PEL); micromolding in capillaries (MIMIC); bacteria; microarrays;
D O I
暂无
中图分类号
学科分类号
摘要
This study reports a simple but efficient method for create bacteria microarrays on a predesigned functional surface consisting of two distinctive regions; a bacterial immobilizing area and a nonimmobilizing region. The functionalized surface was fabricated by a combination of self-assembled polyelectrolyte multilayers (PEL) and micromolding in the capillaries (MIMIC) of poly(ethylene glycol)-poly(d,l-lactide) diblock copolymer (PEGPLA). The PEL region provides bacterial immobilization, and the nonspecific binding of bacteria was prevented using PEG-PLA as passivation molecules. The topological change in the functionalized surface was characterized by atomic force microscopy (AFM), which suggested the occurrence of a laterally homogeneous and well defined surface modification. An analysis of the fluorescence signals from the bacteria microarray indicates that the bacteria are viable and grow after immobilization on patterned surface features. The rapid fabrication of two different functionalities on the surface results in a uniform bacteria pattern with a high signal to noise ratio and shape flexibility, such as lines, squares, and circles. Moreover, the pattern size could be controlled from 20 to 100 μm.
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页码:254 / 259
页数:5
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