Surface acoustic wave-based lab-on-a-chip for the fast detection of Legionella pneumophila in water

被引:22
作者
Gagliardi, Mariacristina [1 ]
Agostini, Matteo [2 ]
Lunardelli, Francesco [3 ]
Lamanna, Leonardo [1 ]
Miranda, Alessio [1 ]
Bazzichi, Agostino [4 ]
Luminare, Antonella Giuliana [4 ]
Cervelli, Fabrizio [4 ]
Gambineri, Francesca [4 ]
Totaro, Michele [5 ]
Lai, Michele [5 ]
Maisetta, Giuseppantonio [5 ]
Batoni, Giovanna [5 ]
Pistello, Mauro [5 ]
Cecchini, Marco [1 ,2 ,3 ]
机构
[1] CNR, Ist Nanosci, NEST, Piazza San Silvestro, I-56127 Pisa, Italy
[2] INTA Srl, Intelligent Acoust Syst, Via Nino Pisano 14, I-56122 Pisa, Italy
[3] NEST, Scuola Normale Super, Piazza San Silvestro, I-56127 Pisa, Italy
[4] ARCHA srl, via Tegulaia, 10-A Ospedaletto, I-56121 Pisa, Italy
[5] Univ Pisa, Dept Translat Res & New technol Med & Surg, Via S Zeno 37, I-56123 Pisa, Italy
关键词
SAW; Lab-on-chip; Legionella pneumophila; Detection; Acoustic sensor; SENSOR; VIRUS; IMMUNOSENSOR; ENUMERATION;
D O I
10.1016/j.snb.2023.133299
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Surface acoustic wave (SAW) -based immuno-biosensors are used for several applications, thanks to their versatility and faster response than conventional analytical methods. SAW immuno-biosensors can be usefully applied to promptly detect bacteria and prevent bacterial infections that can lead to severe diseases. Here, we present a SAW immuno-biosensor to detect Legionella pneumophila in water. Our device, working at ultra-high frequency (740 MHz), is functionalized with an anti-L. pneumophila antibody to maximize the specificity. We report the characteristic curve of the sensor, calculated measuring bacterial samples at known densities, and its related parameters. We also measure L. pneumophila samples contaminated with different Gram-positive and Gram-negative bacterial species (Escherichia coli and Enterococcus faecium) and samples diluted in mains waters. The proposed device is able to detect L. pneumophila in the range from 1.10(6) to 1.10(8) CFU/mL, with a limit of blank of 1.22.10(6) CFU/mL and a limit of detection of 2.01.10(6) CFU/mL. The nonspecific signal due to contaminant bacteria is very limited and measurements of L. pneumophila are not affected by contamination. We obtain a good detection also in mains water, representing a realistic matrix for L. pneumophila. Our results are encouraging and pave the way to the use of fast, easy-to-use, reliable and precise sensors to prevent bacterial infections in human activities.
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页数:9
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