Abstract

The growth of microorganisms on surfaces and interfaces as a biofilm is very common and plays important role in various areas such as material science, biomedicine, or waste treatment among others. Due to their inhomogeneous structure and the variance in the microorganism consortium, the analysis of biofilms represents a significant challenge. An online fluorescence sensor was developed that is able to measure the most important biological fluorophores (proteins, nicotinamide adenine dinucleotide, and flavin) in a noninvasive manner in biofilms, e.g. in bioelectrochemical applications. The sensor gives the opportunity to continuously draw conclusions on the metabolic state of the biofilm. The developed sensor has a diameter of 1 mm at the sensor tip and can be moved on and into the biofilm surface. In the first experiment, the measuring range of the sensor and the long‐term stability could be determined and the system applicability was confirmed. In addition, measurements in biofilm‐like structures could be performed. The formation of a wastewater‐based biofilm was monitored using the developed sensor, demonstrating the functionality of the sensor in a proof‐of‐principle experiment.

Highlights

  • Glass fiber–based fluorescence sensors are widely used in bioprocess technology for online monitoring of substrate and product concentrations [1,2,3,4,5,6,7]

  • Optical fluorescence sensors for biogenic fluorophores are currently not established for the measurement and analysis of Abbreviations: NADH, Nicotinamide adenine dinucleotide; RFI, relative fluorescence intensity

  • The fluorescence sensor was positioned in the flow chamber close to the graphite plate (r = 7.9 mm, h = 2 mm), which was used as a growth surface due to its porosity

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Summary

Introduction

Glass fiber–based fluorescence sensors are widely used in bioprocess technology for online monitoring of substrate and product concentrations [1,2,3,4,5,6,7]. They enable a highly sensitive and noninvasive measurement of various parameters during cultivation processes. Optical fluorescence sensors for biogenic fluorophores are currently not established for the measurement and analysis of Abbreviations: NADH, Nicotinamide adenine dinucleotide; RFI, relative fluorescence intensity.

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