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Toward development of bioactive, neurotransmitter-immobilized surfaces for interaction with post-synaptic membrane receptors

机译:关于生物活性,神经递质固定的表面的发展,用于与突触后膜受体相互作用

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Here we report progress toward the development of bloactive surfaces based on GABA, a major neurotransmitter in the nervous system. While immobilization techniques have focused largely on antibodies, enzymes, and receptors, to our knowledge, this is the first report of a prototype neurotransmitter-immobilized surface. Biosurfaces were assembled onto either mica or glass using passive adsorption of avidin and subsequent attachmento fa derivatized form of GABA via a biotin-avidin affinity bond. Surface characterization was carried out using atomic force microscopy to visualize surface topology. The data reveal 1) passive adsorption of avidin is uniformly dispersed and cluster densities can be controlled through the concentration of the avidin incubation solution 2) GABA tethered via biotin to these avidin surfaces showed a homogenous distribution of the tethered neurotransmitter molecule onto glass and two different population distributions onto mica, Functional assays performed to test the biological activity of the synthesized GABA, direct sandwich ELISA, as well as comparison of AFM images of anti-GABA antibody incubation of these prepared GABA surfaces to control studies using anti-IgG antibody, together support the idea that these synthesized surfaces are biofunctional.
机译:在这里,我们向神经系统中的主要神经递质基于GABA的膨胀表面发展进展。虽然固定技术在很大程度上主要针对抗体,酶和受体,但我们的知识是原型神经递质 - 固定表面的第一个报告。使用生物素 - 抗生物素蛋白亲和粘合剂组装生物素或随后的Activento Fa衍生形式的GABA。使用原子力显微镜进行表面表征以可视化表面拓扑。数据显示1)抗动性吸附氟汀均匀分散,并且可以通过生物素孵育溶液2的浓度来控制群体密度通过生物素对这些抗霉素表面呈玻璃均匀分布显示到玻璃上的均匀分布和两种不同人口分布到云母,进行的功能测定,以测试合成的GABA,直接夹心ELISA的生物活性,以及​​对这些制备的GABA表面的抗GABA抗体孵育的AFM图像的比较,以控制使用抗IgG抗体的研究支持这些合成表面是生物功能的想法。

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