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Comparison of the efficiency control of mycotoxins by some optical immune biosensors

机译:某些光学免疫生物传感器控制霉菌毒素效率的比较

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It was compared the efficiency of patulin control at the application of such optical biosensors which were based on the surface plasmon resonance (SPR) and nano-porous silicon (sNPS). In last case the intensity of the immune reaction was registered by measuring level of chemiluminescence (ChL) or photocurrent of nPS. The sensitivity of this mycotoxin determination by first type of immune biosensor was 0.05-10 mg/L Approximately the same sensitivity as well as the overall time analysis were demonstrated by the immune biosensor based on the nPS too. Nevertheless, the last type of biosensor was simpler in technical aspect and the cost of analysis was cheapest. That is why, it was recommend the nPS based immune biosensor for wide screening application and SPR one for some additional control or verification of preliminary obtained results. In this article a special attention was given to condition of sample preparation for analysis, in particular, micotoxin extraction from potao and some juices. Moreover, it was compared the efficiency of the above mentioned immune biosensors with such traditional approach of mycotoxin determination as the ELISA-method. In the result of investigation and discussion of obtained data it was concluded that both type of the immune biosensors are able to fulfill modern practice demand in respect sensitivity, rapidity, simplicity and cheapness of analysis.
机译:比较了在应用基于表面等离振子共振(SPR)和纳米多孔硅(sNPS)的此类光学生物传感器时,棒曲霉素的控制效率。在最后一种情况下,通过测量化学发光(ChL)或nPS的光电流来记录免疫反应的强度。通过第一类免疫生物传感器测定该真菌毒素的灵敏度为0.05-10 mg / L。基于nPS的免疫生物传感器也证明了相同的灵敏度以及总时间分析。然而,最后一种类型的生物传感器在技术方面较为简单,分析成本最低。因此,建议将基于nPS的免疫生物传感器用于广泛的筛选应用,将SPR推荐用于一些其他控制或初步获得结果的验证。在本文中,我们特别注意样品制备条件以进行分析,特别是从potao和某些果汁中提取微毒素。此外,将上述免疫生物传感器的效率与传统的真菌毒素测定方法(如ELISA方法)进行了比较。在对获得的数据进行调查和讨论的结果中,得出结论,两种类型的免疫生物传感器都能够满足现代实践在分析的敏感性,快速性,简便性和便宜性方面的需求。

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