Institute of Acoustics and Sensors O.M.Corbino, National Research Council of Italy, Via del Fosso del Cavaliere 100, 00133 Rome, Italy.
Biosens Bioelectron. 2013 Mar 15;41:328-34. doi: 10.1016/j.bios.2012.08.046. Epub 2012 Aug 29.
In this paper, we present an array of biosensors for vapour phase detection of odorant molecules based on surface acoustic wave (SAW) resonators coated with odorant-binding proteins (OBPs). For the first time, the sensing capabilities of three different OBPs, as sensitive layers for SAW devices, are studied and compared. The SAW biosensor array is composed of three SAW devices coated by the droplet method with the wild-type OBP from cow (wtbOBP), a double mutant of the OBP from cow (dmbOBP) and the wild-type OBP from pig (wtpOBP). An uncoated device is used to compensate the variations of the environmental parameters. The SAW devices consist of two-port resonators fabricated on quartz (ST-cut, x propagation) with electrodes made of aluminium covered with a thin gold film (2 nm thick). The obtained surface densities of OBP layers are between 1.18×10(-6) kg/m(2) and 2.31×10(-6) kg/m(2) and were calculated measuring the resonant frequency shift of the SAW devices after the coating. The SAW biosensor array was tested in nitrogen upon exposure to vapours of R-(-)-1-octen-3-ol (octenol), in the range of concentration between 13 and 61 ppm, and R-(-)-carvone (carvone), in the range between 9 and 80 ppm. The highest sensitivity for detection of octenol (25.9 Hz/ppm) was obtained using the wtpOBP-based SAW biosensor, while the highest sensitivity for detection of carvone (9.2 Hz/ppm) was obtained using the dmbOBP-based SAW biosensor.
在本文中,我们提出了一系列基于表面声波(SAW)谐振器的生物传感器,用于检测基于气味结合蛋白(OBP)的气相气味分子。我们首次研究并比较了三种不同的 OBPs 作为 SAW 器件的敏感层的传感性能。该 SAW 生物传感器阵列由三个通过液滴法涂覆有牛源野生型 OBP(wtbOBP)、牛源双突变体 OBP(dmbOBP)和猪源野生型 OBP(wtpOBP)的 SAW 器件组成。一个未涂覆的器件用于补偿环境参数的变化。SAW 器件由在石英(ST 切,x 传播)上制造的两端口谐振器组成,电极由铝制成,上面覆盖着一层薄的金膜(2nm 厚)。通过测量涂覆后的 SAW 器件的共振频率偏移,计算出获得的 OBP 层的表面密度在 1.18×10(-6)kg/m(2)到 2.31×10(-6)kg/m(2)之间。在氮气中,该 SAW 生物传感器阵列在浓度为 13 到 61ppm 的 R-(-)-1-辛烯-3-醇(辛醇)蒸气和浓度为 9 到 80ppm 的 R-(-)-香芹酮(香芹酮)蒸气中进行了测试。使用 wtpOBP 基 SAW 生物传感器对辛醇的检测灵敏度最高(25.9Hz/ppm),而使用 dmbOBP 基 SAW 生物传感器对香芹酮的检测灵敏度最高(9.2Hz/ppm)。