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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Hydrogels from a water-soluble zwitterionic polythiophene: Dynamics under pH change and biomolecular interactions observed using quartz crystal microbalance with dissipation monitoring
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Hydrogels from a water-soluble zwitterionic polythiophene: Dynamics under pH change and biomolecular interactions observed using quartz crystal microbalance with dissipation monitoring

机译:水溶性两性离子聚噻吩的水凝胶:使用石英晶体微量天平和耗散监测,观察pH变化和生物分子相互作用下的动力学

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摘要

The water-soluble zwitterionic polythiophene, poly(3-((S)-5-amino-5-carboxyl-3-oxapentyl)-2,5-thiophene) hydrochloride (POWT), is a conjugated polyelectrolyte (CPE) with properties well suited for biochip applications. CPEs readily form hydrogels when exposed to water-based buffer solutions or biomolecule solutions. In this work, we used in situ quartz crystal microbalance with dissipation (QCM-D) monitoring to collect information on the interaction between POWT films exposed to buffers with different pH and POWT/DNA chains. Our data show that POWT swells significantly when exposed to low-pH buffers, such as pH 4 acetate, this is seen as an increase in thickness and decrease in viscosity obtained via a Voight-based modeling of combined f and D QCM-D measurements. The magnitude of thickness and viscosity change upon changing from a pH 10 carbonate buffer to pH 4 acetate is 100% increase in thickness and 50% decrease in viscosity. The response of the hydrogel under pH change is well correlated with fluorescence data from POWT films on glass. The state of the hydrogel is important during interaction with biomolecules; illustrated by the observation that a swollen CPE hydrogel adsorbs a higher amount of DNA than a compacted one. In agreement with previous results, the QCM-D data confirmed that the POWT/DNA hydrogel sense complementary DNA specifically and with negligible binding of noncomplementary DNA. These results are important for efficient constructions of biochips in water environments using this class of materials.
机译:水溶性两性离子聚噻吩盐酸盐(3-((S)-5-氨基-5-羧基-3-氧杂戊基)-2,5-噻吩盐酸盐)(POWT)是具有良好性能的共轭聚电解质(CPE)适用于生物芯片应用。当暴露于水基缓冲溶液或生物分子溶液中时,CPE容易形成水凝胶。在这项工作中,我们使用带耗散的原位石英晶体微天平(QCM-D)监测来收集暴露于具有不同pH值和POWT / DNA链的缓冲液的POWT膜之间相互作用的信息。我们的数据表明,当暴露于低pH缓冲液(如pH 4醋酸盐)中时,POWT会显着膨胀,这被视为厚度的增加和粘度的降低,这是通过基于Voight的f和D QCM-D组合测量建模得到的。从pH 10的碳酸盐缓冲液更改为pH 4的乙酸盐时,厚度和粘度变化的幅度是:厚度增加100%,粘度减少50%。 pH值变化时水凝胶的响应与玻璃上POWT薄膜的荧光数据密切相关。在与生物分子相互作用期间,水凝胶的状态很重要。通过观察发现,溶胀的CPE水凝胶比紧实的凝胶吸收的DNA量更多。与先前的结果一致,QCM-D数据证实POWT / DNA水凝胶特异性地感知互补DNA,并且非互补DNA的结合可忽略不计。这些结果对于使用此类材料在水环境中高效构建生物芯片很重要。

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