首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Reversible Association/Dissociation Reaction of Avidin on the Dendrimer Monolayer Functionalized witha Biotin Analogue for a Regenerable Affinity-Sensing Surface
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Reversible Association/Dissociation Reaction of Avidin on the Dendrimer Monolayer Functionalized witha Biotin Analogue for a Regenerable Affinity-Sensing Surface

机译:亲和素在可再生亲和传感表面上被生物素类似物官能化的树状聚合物单分子膜上的可逆缔合/解离反应

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摘要

A new approach to a repeatedly regenerable affinity-sensing surface was developed based on the reversib association/dissociation reactions between avidin and biotin analogues. For the affinity surface, a fourth generation poly(amidoamine) dendrimer monolayer was first constructed on the Il-mercaptoundecanoic acid self-assembled monolayer on gold. The dendritic surface amine groups then were functionalized with biotin analogues, desthiobiotin (1), or newly synthesized desthiobiotin amidocaproate (2), an extended form of I, which shows lower affinity toward avidin. To test the association/dissociation reaction cycles at the affinity surface, avidin adlayer was formed onto the biotin analogue functionalized surface and displaced with free biotin. To trace the stepwise reactions, biotinylated glucose oxidase (b-GOx) as a model enzyme was loaded onto the affinity surface, and cyclic voltammetric measurements were performed by registering the activity of the associated b-GOx. The efficient association/dissociation reaction cycles were registered, especially for the 2-modified electrodes, implying steric hindrance from the ligand length for biospecific interaction. With the optimized affinity-surface construction steps and reaction conditions, continuous association/dissociation reaction cycles were achieved, resulting in a regenerable affinity surface.
机译:基于亲和素和生物素类似物之间的可逆性缔合/解离反应,开发了一种可重复再生的亲和感表面的新方法。对于亲和表面,首先在金上的II-巯基癸酸自组装单层上构建第四代聚(酰胺基胺)树状聚合物单层。然后用生物素类似物,脱硫生物素(1)或新合成的脱硫生物素酰胺基丙酸酯(2)(I的扩展形式)将树突表面胺基官能化,这显示出对亲和素的亲和力较低。为了测试亲和表面上的缔合/解离反应周期,在生物素类似物功能化的表面上形成亲和素吸附层,并用游离生物素置换。为了追踪逐步反应,将生物素化的葡萄糖氧化酶(b-GOx)作为模型酶加载到亲和表面上,并通过记录相关b-GOx的活性进行循环伏安法测量。记录了有效的缔合/解离反应周期,尤其是对于2-修饰的电极,这暗示了来自配体长度的空间位阻,以进行生物特异性相互作用。通过优化的亲和表面构建步骤和反应条件,实现了连续的缔合/解离反应循环,从而产生了可再生的亲和表面。

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