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Real time device for biosensing: design of a bacteriophage model using love acoustic waves.
Biosens Bioelectron. 2003 May; 18(5-6):755-63.BB

Abstract

Love wave sensors (ST-cut quartz substrate with interdigital transducers, SiO(2) guiding layer and sensitive coating) have been receiving a great deal of attention for a few years. Indeed, the wave coupled in a guiding layer confers a high gravimetric sensitivity and the shear horizontal (SH) polarization allows to work in liquid media. In this paper, an analytical method is proposed to calculate the Love wave phase velocity and the gravimetric sensitivity for a complete multilayer structure. This allows us to optimize the Love wave devices design in order to improve their gravimetric sensitivity in liquid media. As a model for virus or bacteria detection in liquids (drinking or bathing water, food em leader) we design a model using M13 bacteriophage. The first step is the anti-M13 (AM13) monoclonal antibody grafting, on the device surface (SiO(2)). The second step is an immunoreaction in between the M13 bacteriophage and the AM13 antibody. The Love wave device allows to detect in real time the graft of the AM13 sensitive coating, as well as the immobilization of the M13 bacteriophages. With a pH change, the M13 bacteriophages can be removed from the sensor surface, in order to be numerated as plaque forming unit (pfu). Results on the sensitivity of Love waves are compared with similar immunological works with bulk acoustic wave devices, and demonstrate the high potentialities of Love waves sensors.

Authors+Show Affiliations

IXL (CNRS UMR 5818-ENSEIRB-Université Bordeaux1), 351 Cours de la Libération, 33045, Talence, France.No affiliation info availableNo affiliation info availableNo affiliation info availableNo affiliation info availableNo affiliation info availableNo affiliation info available

Pub Type(s)

Evaluation Study
Journal Article
Research Support, Non-U.S. Gov't

Language

eng

PubMed ID

12706589

Citation

Tamarin, O, et al. "Real Time Device for Biosensing: Design of a Bacteriophage Model Using Love Acoustic Waves." Biosensors & Bioelectronics, vol. 18, no. 5-6, 2003, pp. 755-63.
Tamarin O, Comeau S, Déjous C, et al. Real time device for biosensing: design of a bacteriophage model using love acoustic waves. Biosens Bioelectron. 2003;18(5-6):755-63.
Tamarin, O., Comeau, S., Déjous, C., Moynet, D., Rebière, D., Bezian, J., & Pistré, J. (2003). Real time device for biosensing: design of a bacteriophage model using love acoustic waves. Biosensors & Bioelectronics, 18(5-6), 755-63.
Tamarin O, et al. Real Time Device for Biosensing: Design of a Bacteriophage Model Using Love Acoustic Waves. Biosens Bioelectron. 2003;18(5-6):755-63. PubMed PMID: 12706589.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - Real time device for biosensing: design of a bacteriophage model using love acoustic waves. AU - Tamarin,O, AU - Comeau,S, AU - Déjous,C, AU - Moynet,D, AU - Rebière,D, AU - Bezian,J, AU - Pistré,J, PY - 2003/4/23/pubmed PY - 2004/4/14/medline PY - 2003/4/23/entrez SP - 755 EP - 63 JF - Biosensors & bioelectronics JO - Biosens Bioelectron VL - 18 IS - 5-6 N2 - Love wave sensors (ST-cut quartz substrate with interdigital transducers, SiO(2) guiding layer and sensitive coating) have been receiving a great deal of attention for a few years. Indeed, the wave coupled in a guiding layer confers a high gravimetric sensitivity and the shear horizontal (SH) polarization allows to work in liquid media. In this paper, an analytical method is proposed to calculate the Love wave phase velocity and the gravimetric sensitivity for a complete multilayer structure. This allows us to optimize the Love wave devices design in order to improve their gravimetric sensitivity in liquid media. As a model for virus or bacteria detection in liquids (drinking or bathing water, food em leader) we design a model using M13 bacteriophage. The first step is the anti-M13 (AM13) monoclonal antibody grafting, on the device surface (SiO(2)). The second step is an immunoreaction in between the M13 bacteriophage and the AM13 antibody. The Love wave device allows to detect in real time the graft of the AM13 sensitive coating, as well as the immobilization of the M13 bacteriophages. With a pH change, the M13 bacteriophages can be removed from the sensor surface, in order to be numerated as plaque forming unit (pfu). Results on the sensitivity of Love waves are compared with similar immunological works with bulk acoustic wave devices, and demonstrate the high potentialities of Love waves sensors. SN - 0956-5663 UR - https://www.unboundmedicine.com/medline/citation/12706589/Real_time_device_for_biosensing:_design_of_a_bacteriophage_model_using_love_acoustic_waves_ DB - PRIME DP - Unbound Medicine ER -