AI Article Synopsis

  • The decentralized detection of bacteria from various samples can improve current methods and lead to better outcomes in pathogen identification.
  • Identifying new markers, like enterobactin (Ent), and using innovative analysis methods can simplify and enhance safety in pathogen detection.
  • Novel mobile platforms, such as custom-printed medical gloves, show promise for rapid and cost-effective screening of bacterial contamination in various environments.

Article Abstract

The rapid and decentralized detection of bacteria from biomedical, environmental, and food samples has the capacity to improve the conventional protocols and to change a predictable outcome. Identifying new markers and analysis methods represents an attractive strategy for the indirect but simpler and safer detection of pathogens that could replace existing methods. Enterobactin (Ent), a siderophore produced by or other Gram-negative bacteria, was studied on different electrode materials to reveal its electrochemical fingerprint-very useful information towards the detection of the bacteria based on this analyte. The molecule was successfully identified in culture media samples and a future goal is the development of a rapid antibiogram. The presence of Ent was also assessed in wastewater and treated water samples collected from the municipal sewage treatment plant, groundwater, and tap water. Moreover, a custom configuration printed on a medical glove was employed to detect the target in the presence of another bacterial marker, namely pyocyanin (PyoC), that being a metabolite specific of another pathogen bacterium, namely . Such new mobile and wearable platforms offer considerable promise for rapid low-cost on-site screening of bacterial contamination.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9456371PMC
http://dx.doi.org/10.3390/ijms23179884DOI Listing

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