efficient and rapid detection of salmonella using microfluidic impedance based sensing

Clicks: 122
ID: 238591
2015
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Ranked #156 of 205 articles by views in BMC infectious diseases

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Abstract
We present a low cost, easy to fabricate biosensor, which can quickly and accurately detect Salmonella typhimurium. This study also compares the advantages of the microfluidic biosensor over a nonmicrofluidic biosensor. High density interdigitated electrode array was used to detect Salmonella cells inside a microfluidic chip. Monoclonal anti-Salmonella antibodies were allowed to be immobilized on the surface of the electrode array for selective detection of Salmonella typhimurium. An impedance analyzer was used to measure and record the response signal from the biosensor. The biosensor provides qualitative and quantitative results in 3 hours without any enrichment steps. The microfluidic biosensor’s lower detection limit was found to be 3×103 CFU/mL compared to the 3×104 CFU/mL of the nonmicrofluidic biosensor, which shows that the microfluidic biosensor has 10-fold increased sensitivity. The impedance response of microfluidic biosensor was also significantly higher (2 to 2.9 times) compared to the nonmicrofluidic biosensor.
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dastider2015journalefficient Use this key to autocite in the manuscript while using SciMatic Manuscript Manager or Thesis Manager
Authors ;Shibajyoti Ghosh Dastider;Syed Barizuddin;Nuh S. Yuksek;Majed Dweik;Mahmoud F. Almasri
Journal BMC infectious diseases
Year 2015
DOI
10.1155/2015/293461
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