Institute of Analytical Chemistry, Department of Chemistry , Zhejiang University , Hangzhou 310058 , China.
Beijing National Research Center for Molecular Sciences, Key Laboratory of Analytical Chemistry for Living Biosystems, Institute of Chemistry , Chinese Academy of Sciences (CAS) , Beijing 100190 , China.
Anal Chem. 2019 Mar 5;91(5):3645-3651. doi: 10.1021/acs.analchem.8b05658. Epub 2019 Feb 12.
Oxygen (O) is involved in many life activities, and its in vivo monitoring is of vital importance. In vivo electrochemistry with carbon fiber microelectrode (CFME) has been proven to be a suitable technique, but the surface fouling propensity poses a great challenge to its current stability and reliability. Herein we electro-grafted silica nanoporous membrane (SNM) consisting of uniform, closely packed, and vertically aligned nanochannels on the CFME surface, which was capable of protecting the surface effectively from biofouling and, meanwhile, preserving the permeability to O. In comparison with a bare CFME, the SNM/CFME after implantation in the brain of a live rat maintained its analytical sensitivity to O. Moreover, the implanted electrode could monitor O continuously under the in vivo condition, exhibiting an excellent current stability, as well as a fast response, up to 2 h. Further considering the high permeability, selectivity, and biocompatibility of SNM, we believe the modified CFME is a highly reliable sensor for long-term in vivo monitoring of O, as well as other neurochemicals, with promise in physiological, ethological, and neurological studies.
氧气 (O) 参与许多生命活动,其体内监测至关重要。碳纤维微电极 (CFME) 的体内电化学已被证明是一种合适的技术,但表面污垢倾向对其当前的稳定性和可靠性构成了巨大挑战。在此,我们在 CFME 表面电接枝了由均匀、紧密排列和垂直排列的纳米通道组成的二氧化硅纳米多孔膜 (SNM),这可以有效地保护表面免受生物污垢的影响,同时保持对 O 的渗透性。与裸 CFME 相比,植入活体大鼠大脑后的 SNM/CFME 仍保持对 O 的分析灵敏度。此外,植入的电极可以在体内条件下持续监测 O,表现出出色的电流稳定性,以及快速的响应,长达 2 小时。进一步考虑到 SNM 的高渗透性、选择性和生物相容性,我们相信修饰后的 CFME 是一种用于 O 以及其他神经化学物质的长期体内监测的高可靠性传感器,在生理、行为和神经科学研究中具有广阔的应用前景。