Department of Mining Industrial and ICT Engineering, Universitat Politècnica de Catalunya, Avinguda de les Bases de Manresa 61-73, 08242 Manresa, Spain.
Instituto de Microelectrónica de Barcelona IMB-CNM (CSIC), Esfera UAB, Campus Universitat Autònoma de Barcelona, 08193 Bellaterra, Spain.
Sensors (Basel). 2019 Nov 1;19(21):4747. doi: 10.3390/s19214747.
A novel sensing device for simultaneous dissolved oxygen (DO) and pH monitoring specially designed for biofilm profiling is presented in this work. This device enabled the recording of instantaneous DO and pH dynamic profiles within biofilms, improving the tools available for the study and the characterization of biological systems. The microsensor consisted of two parallel arrays of microelectrodes. Microelectrodes used for DO sensing were bare gold electrodes, while microelectrodes used for pH sensing were platinum-based electrodes modified using electrodeposited iridium oxide. The device was fabricated with a polyimide (Kapton) film of 127 µm as a substrate for minimizing the damage caused on the biofilm structure during its insertion. The electrodes were covered with a Nafion layer to increase sensor stability and repeatability and to avoid electrode surface fouling. DO microelectrodes showed a linear response in the range 0-8 mg L, a detection limit of 0.05 mg L, and a sensitivity of 2.06 nA L mg. pH electrodes showed a linear super-Nernstian response (74.2 ± 0.7 mV/pH unit) in a wide pH range (pH 4-9). The multi-analyte sensor array was validated in a flat plate bioreactor where simultaneous and instantaneous pH and DO profiles within a sulfide oxidizing biofilm were recorded. The electrodes spatial resolution, the monitoring sensitivity, and the minimally invasive features exhibited by the proposed microsensor improved biofilm monitoring performance, enabling the quantification of mass transfer resistances and the assessment of biological activity.
本工作提出了一种用于同时监测溶解氧(DO)和 pH 的新型传感装置,该装置专为生物膜剖析而设计。该装置能够记录生物膜内的瞬时 DO 和 pH 动态分布,为研究和生物系统特性描述提供了更多工具。微传感器由两个平行的微电极阵列组成。用于 DO 传感的微电极是裸露的金电极,而用于 pH 传感的微电极是使用电沉积氧化铱修饰的基于铂的电极。该装置采用 127 µm 的聚酰亚胺(Kapton)薄膜作为基底进行制造,以最大限度地减少在插入过程中对生物膜结构造成的损伤。电极上覆盖有一层 Nafion 层,以提高传感器的稳定性和重复性,并避免电极表面结垢。DO 微电极在 0-8 mg L 的范围内呈现线性响应,检测限为 0.05 mg L,灵敏度为 2.06 nA L mg。pH 电极在宽 pH 范围内(pH 4-9)呈现超 Nernstian 线性响应(74.2 ± 0.7 mV/pH 单位)。多分析物传感器阵列在平板生物反应器中进行了验证,在其中记录了硫化物氧化生物膜内的同时和瞬时 pH 和 DO 分布。所提出的微传感器具有空间分辨率高、监测灵敏度高和微创性等特点,提高了生物膜监测性能,能够定量传质阻力并评估生物活性。