Non-covalent adsorption of neurotransmission-relevant proteins on locally laser-oxidized and pristine graphene†

Aku Lampinen, Johanna Schirmer, Aleksei Emelianov, Andreas Johansson and Mika Pettersson
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Abstract

Femtosecond pulsed laser two-photon oxidation (2PO) was used to modulate protein adsorption on graphene surfaces on a Si/SiO2 substrate. The adsorption behavior of calmodulin (CaM) and a muscarinic acetylcholine receptor (mAchR) fragment on pristine (Pr) and 2PO-treated graphene were studied, utilizing atomic force microscopy and infrared scattering-type scanning near-field optical microscopy for characterization. The results showed that proteins predominantly bound as a (sub-)monolayer, and selective adsorption could be achieved by carefully varying graphene oxidation level, pH during functionalization, and protein concentration. The most pronounced selectivity was observed at low 2PO levels, where predominantly only point-like oxidized defects are generated. Preferential binding on either Pr or oxidized graphene could be achieved depending on the 2PO and adsorption conditions used. Based on the incubation conditions, the surface area covered by mAchR on single-layer graphene varied from 29% (Pr) vs. 91% (2PO) to 48% (Pr) vs. 13% (2PO). For CaM, the coverage varied from 53% (Pr) vs. 95% (2PO) to 71% (Pr) vs. 52% (2PO). These results can be exploited in graphene biosensor applications via selective non-covalent functionalization of sensors with receptor proteins.

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神经传递相关蛋白质在局部激光氧化和原始石墨烯上的非共价吸附
飞秒脉冲激光双光子氧化(2PO)被用来调节蛋白质在硅/二氧化硅基底上石墨烯表面的吸附。利用原子力显微镜和红外散射型扫描近场光学显微镜表征,研究了钙调素(CaM)和毒蕈碱乙酰胆碱受体(mAchR)片段在原始石墨烯(Pr)和经 2PO 处理的石墨烯上的吸附行为。结果表明,蛋白质主要以(亚)单层形式结合,通过仔细改变石墨烯氧化程度、功能化过程中的 pH 值和蛋白质浓度,可以实现选择性吸附。在 2PO 含量较低时,选择性最为明显,在这种情况下主要只产生点状氧化缺陷。根据所使用的 2PO 和吸附条件,Pr 或氧化石墨烯都可以实现优先结合。根据培养条件,单层石墨烯上的 mAchR 覆盖表面积从 29%(Pr)对 91%(2PO)到 48%(Pr)对 13%(2PO)不等。对于 CaM,覆盖率从 53%(Pr)对 95%(2PO)到 71%(Pr)对 52%(2PO)不等。这些结果可通过受体蛋白对传感器进行选择性非共价功能化,应用于石墨烯生物传感器。
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