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Effective collection of volatile organic compounds in water using rimming flow with odorant-binding proteins

机译:利用带气味剂结合蛋白的边沿流有效收集水中的挥发性有机化合物

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Water solution of volatile organic compounds (VOCs) in air, especially explosive materials, is required to detect VOCs by biosensors efficiently. We developed a collecting device like olfactory mechanism of animals: thin film of water including odorant binding proteins (OBPs), which play a major role in transport of hydrophobic odor molecules to olfactory receptors. Thin liquid film was generated using rimming flow on the inner surface of a rotating glass cylinder. Two kinds of OBPs derived from Bombyx mori (Pheromone Binding Protein 1: PBP1, General Odorant Binding Protein 2: GOBP2) were used as additive in pure water. Eugenol was used to simulate an explosive substance for collection. The sample gas including dilute eugenol was collected by the rimming flow device. The concentration of eugenol in solution was measured by gas chromatography. The experimental results showed that the efficiency for the collection of eugenol increased with the revolution rate of the cylinder. Increase in the efficiency was mainly attributed to the spread of the liquid in the cylinder. Furthermore, as the revolution rate was increased, the mole fraction of eugenol near the inside wall was higher than at the axis of rotation by centrifugal force. This might enhance the dissolution of eugenol in water. The collection efficiency further increased by the adding of both proteins and PBP1 exhibited higher affinity for eugenol.
机译:空气中的挥发性有机化合物(VOC)的水溶液,特别是易爆物质,需要通过生物传感器有效地检测VOC。我们开发了一种类似于动物嗅觉机制的收集装置:包含气味结合蛋白(OBP)的水薄膜,在疏水性气味分子向嗅觉受体的转运中起主要作用。利用边缘流在旋转的玻璃圆筒的内表面上产生液体薄膜。在纯水中,使用了两种来自家蚕的OBP(信息素结合蛋白1:PBP1,一般气味结合蛋白2:GOBP2)作为添加剂。丁香酚用于模拟爆炸性物质进行收集。通过边缘流动装置收集包括稀丁子香酚的样品气体。通过气相色谱法测量溶液中丁香酚的浓度。实验结果表明,丁香酚的收集效率随气缸的转速而增加。效率的提高主要归因于气缸内液体的扩散。此外,随着转速的增加,内壁附近的丁子香酚的摩尔分数高于旋转轴在离心力的作用下。这可能会提高丁香酚在水中的溶解度。通过同时添加蛋白质和PBP1,对丁香酚的亲和力更高,收集效率进一步提高。

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