首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Comparative analysis of microbial fuel cell based biosensors developed with a mixed culture and Shewanella loihica PV-4 and underlying biological mechanism
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Comparative analysis of microbial fuel cell based biosensors developed with a mixed culture and Shewanella loihica PV-4 and underlying biological mechanism

机译:混合培养物和芍药菌的微生物燃料电池基生物传感器的比较分析及沉萘菌PV-4及其生物机制

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Microbial fuel cell based biosensors (MFC-biosensors) utilize anode biofilms as biological recognition elements to monitor biochemical oxygen demand (BOD) and biotoxicity. However, the relatively poor sensitivity constrains the application of MFC-biosensors. To address this limitation, this study provided a systematic comparison of sensitivity between the MFC-biosensors constructed with two inocula. Higher biomass density and viability were both observed in the anode biofilm of the mixed culture MFC, which resulted in better sensitivity for BOD assessment. Compared with using mixed culture as inoculum, the anode biofilm developed with Shewanella loihica PV-4 presented lower content of extracellular polymeric substances and poorer ability to secrete protein under toxic shocks. Moreover, the looser structure in the S. loihica PV-4 biofilm further facilitated its susceptibilities to toxic agents. Therefore, the MFC-biosensor with a pure culture of S. loihica PV-4 delivered higher sensitivity for biotoxicity monitoring. This study proposed a new perspective to enhance sensor performance.
机译:微生物燃料电池基生物传感器(MFC-生物传感器)利用阳极生物膜作为生物学识别元件,以监测生化需氧量(BOD)和生物毒性。然而,相对较差的敏感性限制了MFC-生物传感器的应用。为了解决这些限制,本研究提供了系统地对具有两个接种物构成的MFC-生物传感器之间的敏感性的系统比较。在混合培养MFC的阳极生物膜中观察到更高的生物质密度和活力,这导致BOD评估的更好敏感性。与使用混合培养为inoculum相比,阳极生物膜与沉肠罗米卡PV-4发育的细胞外聚合物物质的较低含量和较差的毒性冲击术后分泌蛋白质的能力。此外,S. Loihica PV-4生物膜的松动结构进一步促进了其对有毒剂的敏感性。因此,具有纯培养的S. Loihica PV-4的MFC-生物传感器为生物毒性监测提供了更高的敏感性。本研究提出了一种提高传感器性能的新视角。

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