A Path towards Timely VAP Diagnosis: Proof-of-Concept Study on Pyocyanin Sensing with Cu-Mg Doped Graphene Oxide.
Mohammad NoorizadehMithra GeethaFaycal BensaaliNader MeskinKishor Kumar SadasivuniSusu M ZughaierMahmoud ElgamalAli Ait HssainPublished in: Biosensors (2024)
In response to the urgent requirement for rapid, precise, and cost-effective detection in intensive care units (ICUs) for ventilated patients, as well as the need to overcome the limitations of traditional detection methods, researchers have turned their attention towards advancing novel technologies. Among these, biosensors have emerged as a reliable platform for achieving accurate and early diagnoses. In this study, we explore the possibility of using Pyocyanin analysis for early detection of pathogens in ventilator-associated pneumonia (VAP) and lower respiratory tract infections in ventilated patients. To achieve this, we developed an electrochemical sensor utilizing a graphene oxide-copper oxide-doped MgO ( GO - Cu - Mgo ) (GCM) catalyst for Pyocyanin detection. Pyocyanin is a virulence factor in the phenazine group that is produced by Pseudomonas aeruginosa strains, leading to infections such as pneumonia, urinary tract infections, and cystic fibrosis. We additionally investigated the use of DNA aptamers for detecting Pyocyanin as a biomarker of Pseudomonas aeruginosa , a common causative agent of VAP. The results of this study indicated that electrochemical detection of Pyocyanin using a GCM catalyst shows promising potential for various applications, including clinical diagnostics and drug discovery.
Keyphrases
- pseudomonas aeruginosa
- cystic fibrosis
- label free
- loop mediated isothermal amplification
- end stage renal disease
- intensive care unit
- newly diagnosed
- metal organic framework
- chronic kidney disease
- escherichia coli
- ionic liquid
- highly efficient
- respiratory tract
- drug discovery
- peritoneal dialysis
- prognostic factors
- quantum dots
- staphylococcus aureus
- real time pcr
- acute respiratory distress syndrome
- working memory
- room temperature
- high resolution
- high throughput
- molecularly imprinted
- antimicrobial resistance
- chronic obstructive pulmonary disease
- mechanical ventilation
- mass spectrometry
- extracorporeal membrane oxygenation
- high speed