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一种用于使用电化学阻抗谱实时监测微藻生长和胞外多糖产量的三维多孔电极。

A 3D porous electrode for real-time monitoring of microalgal growth and exopolysaccharides yields using Electrochemical Impedance Spectroscopy.

作者信息

Cotta Francisco C, Amaral Raquel, Bacellar Felipe L, Correia Diogo, Asadi Kamal, Rocha Paulo R F

机构信息

Centre for Functional Ecology-Science for People & the Planet, Associate Laboratory TERRA, Department of Life Sciences, University of Coimbra, Coimbra, 3000-456, Portugal.

Department of Physics, University of Bath, Claverton Down, Bath, BA2 7AY, UK.

出版信息

Biosens Bioelectron. 2025 Jun 1;277:117260. doi: 10.1016/j.bios.2025.117260. Epub 2025 Feb 13.

Abstract

Efficient monitoring of microalgal growth is vital for biomass industrialization and management of water resources. The precise determination of growth phases of biotechnologically relevant species of microalgae is necessary as it allows controlling the onset of target metabolites production such as exopolysaccharides (EPS). However, a low-cost, real-time and ultrasensitive measurement method for direct determination of real-time microalgal growth and EPS production does not exist. Here, we show that Electrochemical Impedance Spectroscopy (EIS) in combination with porous polyurethane(PU)/poly (3,4- ethylenedioxythiophene) polystyrene sulfonate (PEDOT:PSS) electrodes can be used as a real-time probe to monitor microalgal growth and EPS production. We employ Lobochlamys segnis as a microalgae model system and show that growth can be continuously monitored with EIS for 14 days. A logistic growth rate from impedance data of k = 0.75/day is found similar to that of conventional cell counting, of k = 0.85/day, and is extracted from initial cell seeding densities as low as 10 cells/mL. Furthermore, the Ohmic resistance of electrolyte solution enables the detection of the time-point of maximum EPS production. The combination of ultra-large porous electrodes with EIS provides a platform for sensing and modelling of microalgae growth in real-time and opens new avenues for predictive water resource management as well as more effective large-scale microalgal production in biotechnological applications.

摘要

高效监测微藻生长对于生物质工业化和水资源管理至关重要。精确确定与生物技术相关的微藻物种的生长阶段是必要的,因为这有助于控制目标代谢产物(如胞外多糖,EPS)的产生起始点。然而,目前尚不存在一种低成本、实时且超灵敏的直接测定微藻实时生长和EPS产生的测量方法。在此,我们表明,电化学阻抗谱(EIS)与多孔聚氨酯(PU)/聚(3,4 - 乙撑二氧噻吩)聚苯乙烯磺酸盐(PEDOT:PSS)电极相结合,可作为实时探针来监测微藻生长和EPS产生。我们采用纤细裸藻作为微藻模型系统,结果表明利用EIS可连续监测其生长14天。从阻抗数据得出的逻辑生长速率k = 0.75/天,与传统细胞计数得出的k = 0.85/天相似,且该生长速率是从低至10个细胞/毫升的初始细胞接种密度中提取的。此外,电解质溶液的欧姆电阻能够检测到EPS产生量最大的时间点。超大孔隙电极与EIS的结合为实时传感和模拟微藻生长提供了一个平台,并为预测性水资源管理以及生物技术应用中更有效的大规模微藻生产开辟了新途径。

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