Key Laboratory of Interfacial Reaction and Sensing Analysis in Universities of Shandong, School of Chemistry and Chemical Engineering , University of Jinan , Jinan , 250022 , China.
Langmuir. 2018 Jul 3;34(26):7744-7750. doi: 10.1021/acs.langmuir.8b00264. Epub 2018 Jun 20.
The development of a simple but effective surface modification method is very important for the construction of biosensing interfaces. In this work, a postsynthetic water-soluble epinephrine-melanin (EPM) prepared from the self-polymerization of epinephrine has been demonstrated as an alternative of the widely used in situ formed polydopamine (PDA) for the surface coating of TiO nanoparticles and the construction of a photoelectrochemical (PEC) biosensing interface. In contrast to the formation of insoluble aggregates in solution for dopamine, a homogeneous solution was obtained for epinephrine after the self-polymerization. The use of EPM as a postsynthetic material enables the surface coating of TiO with the simple drop-casting method. Compared with the widely used dip-coating method for in situ PDA modification, the developed drop-casting method based on the use of water-soluble postsynthetic EPM saves more time, avoids the waste of bulk solution, and undoubtedly decreases the batch-to-batch inconsistencies. The simple coating of commercially available TiO nanoparticles with EPM greatly enhances the PEC performance due to the charge transfer property of EPM. The application of EPM in the construction of the PEC biosensing interface was demonstrated by the immobilization of a model biorecognition element (prostate specific antigen (PSA) antibody) onto EPM modified indium tin oxide (ITO) photoanode. Sensitive detection of PSA with high selectivity and stability was obtained on the basis of the biological recognition ability of PSA antibody. This work may renew the use of postsynthetic melanin-like biopolymers in other fields.
开发一种简单而有效的表面改性方法对于构建生物传感界面非常重要。在这项工作中,展示了一种由肾上腺素自聚合制备的水溶性后合成肾上腺素-黑色素(EPM),可替代广泛使用的原位形成的聚多巴胺(PDA),用于 TiO2 纳米粒子的表面涂层和光电化学(PEC)生物传感界面的构建。与多巴胺在溶液中形成不溶性聚集物相反,肾上腺素自聚合后得到了均匀的溶液。将 EPM 用作后合成材料,可通过简单的滴涂法对 TiO2 进行表面涂层。与广泛使用的原位 PDA 改性的浸涂法相比,基于使用水溶性后合成 EPM 的开发的滴涂法节省了更多时间,避免了大量溶液的浪费,并且无疑减少了批间差异。简单地用 EPM 涂覆市售的 TiO2 纳米粒子由于 EPM 的电荷转移性质而大大增强了 PEC 性能。通过将模型生物识别元件(前列腺特异性抗原(PSA)抗体)固定在 EPM 修饰的氧化铟锡(ITO)光阳极上,证明了 EPM 在 PEC 生物传感界面构建中的应用。基于 PSA 抗体的生物识别能力,实现了对 PSA 的高选择性和稳定性的灵敏检测。这项工作可能会使后合成类黑色素生物聚合物在其他领域得到重新利用。