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Towards biological quantity theory for nominal property metrology in polyenzymatic devices with living cells

机译:朝着生物酶机与活细胞的义酶装置中标称性质计量的生物量理论

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Here we discuss the concepts of "biological quantity" and "nominal property" within the framework of the problem of biological measurements based on new specific results of biological analysis using a microfluidic platform and chips developed by our team earlier. It was shown that based on different microfluidic platforms it is possible to develop chips with a polyenzymatic bioluminescent system NAD(P)H:FMN-oxidoreductase-luciferase (Red + Luc), which can be used in various areas of biological analysis. Thus, disposable microfluidic chips with Red + Luc system suitable for field and indoor use were developed using continuous flow microfluidic platform. The use of droplet-based microfluidic platform allowed to develop microfluidic chips with Red + Luc system for long-term continuous measurements of water samples, for example, in places of waste disposal by industrial enterprises. The reference for comparing different biological quantities with each other in the proposed system was a photodetector, which converted non-numeric values and nominal properties recorded by a biological module Red + Luc into numerical variables. Such a reference was implemented as a portable luminometer based on silicon photomultiplier. The results allow to perform other biological measurements and to start the discussion of modern biological concepts in the language of biological measures.
机译:在这里,我们讨论了基于使用我们之前的微流体平台和我们的团队开发的微流体平台和筹码的生物学分析的新特定结果框架内“生物量”和“名义财产”的概念。结果表明,基于不同的微流体平台,可以使用聚酶生物发光系统NAD(P)H:FMN-氧化还原酶 - 荧光素酶(RUC + LUC)进行芯片,其可用于各种生物分析领域。因此,使用连续流动微流体平台开发了适用于场和室内使用的具有红色+ LUC系统的一次性微流体芯片。使用基于液滴的微流体平台允许使用红色+ LUC系统开发微流体芯片,以便在工业企业的废物处理场所的水样中长期连续测量。在所提出的系统中彼此相互比较不同的生物量的参考是光电探测器,其转换了通过生物模块RED + LUC记录到数值变量的非数值和标称性能。这种参考作为基于硅光电倍增管的便携式发光计。结果允许执行其他生物学测量,并以生物措施语言开始对现代生物概念的讨论。

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