首页> 外文期刊>Journal of biomedical materials research, Part A >Fabrication of protein micropatterns using a functional substrate with convertible protein-adsorption surface properties
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Fabrication of protein micropatterns using a functional substrate with convertible protein-adsorption surface properties

机译:使用具有可转换的蛋白质吸附表面特性的功能性基材制备蛋白质微图案

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摘要

A functional substrate capable of regulating protein adsorption was prepared using a crosslinked albumin (cl-al-bumin) film for use in the fabrication of protein micropatterns. The adsorption of proteins with different characteristics onto cl-albumin film, including serum proteins, serum albumin, and lysozyme, was investigated using a quartz crystal microbalance. The results showed that surfaces coated with cl-albumin film are highly resistant to protein adsorption, regardless of protein charge and rigidity. In addition, this adsorption-resistance property can be easily converted to promote protein adsorption by exposing the cl-albumin film to a charged polymer solution. By combining the convertible surface property of cl-albumin film and inkjet printing techniques, a precise protein micropattern was successfully fabricated on the substrate. Protein adsorption onto the wall surface of microchannels could also be suppressed or promoted by coating the surface with cl-albumin film. This approach will aid in the development of biomaterials carrying protein micropatterns, such as biosensors, biochips, and cellular scaffolds.
机译:使用交联的白蛋白(cl-al-bumin)膜制备了能够调节蛋白质吸附的功能性底物,用于制造蛋白质微图案。使用石英晶体微量天平研究了具有不同特征的蛋白质在白蛋白膜上的吸附,包括血清蛋白,血清白蛋白和溶菌酶。结果表明,无论蛋白电荷和刚度如何,涂有Cl-白蛋白膜的表面均具有很高的抗蛋白吸附能力。另外,通过将cl-白蛋白膜暴露于带电的聚合物溶液中,可以容易地转换这种抗吸附性以促进蛋白质吸附。通过结合cl-白蛋白膜的可转换表面特性和喷墨印刷技术,在基板上成功制作了精确的蛋白质微图案。通过用白蛋白层膜包被表面,也可以抑制或促进蛋白质吸附在微通道壁表面上。这种方法将有助于开发带有蛋白质微模式的生物材料,例如生物传感器,生物芯片和细胞支架。

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