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Enzyme Entrapment in Polyaniline Biosensors Observed via Fluorescence Anisotropy and Antiquenching

机译:通过荧光各向异性和古董观察的聚苯胺生物传感器中的酶截留。

摘要

The entrapment of oxidoreductase enzymes within polyaniline polymer films by inducing hydrophobic collapse using phosphate buffered solution (PBS) has been shown to be a cost-effective method for fabricating organic biosensors. Here, we use fluorescence anisotropy measurements to verify enzyme immobilization and subsequent electron donation to the polymer matrix, both prerequisites for an effective biosensor. Specifically, we observe a three order of magnitude decrease in the ratio of the fluorescence to rotational lifetimes. The observed fluorescence antiquenching supports the previously proposed model that the polymer chain assumes a severely coiled conformation when exposed to PBS. We also find that this collapse is further aided by the enzyme itself.
机译:通过使用磷酸盐缓冲溶液(PBS)诱导疏水性塌陷,将氧化还原酶截留在聚苯胺聚合物薄膜中已被证明是一种制造有机生物传感器的经济有效的方法。在这里,我们使用荧光各向异性测量来验证酶的固定化以及随后将电子捐赠给聚合物基质,这都是有效生物传感器的先决条件。具体来说,我们观察到荧光与旋转寿命之比降低了三个数量级。观察到的荧光古板化支持先前提出的模型,即当暴露于PBS时,聚合物链呈现严重盘绕的构象。我们还发现这种崩溃进一步受到酶本身的帮助。

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    Nemzer Louis R.;

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  • 年度 2014
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