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Circular Bioassay Platforms for Applications in Microwave-Accelerated Techniques

机译:用于微波加速技术的环形生物测定平台

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摘要

In this paper, we present the design of four different circular bioassay platforms, which are suitable for homogeneous microwave heating, using theoretical calculations (i.e., COMSOL™ multiphysics software). Circular bioassay platforms are constructed from poly(methyl methacrylate) (PMMA) for optical transparency between 400–800 nm, has multiple sample capacity (12, 16, 19 and 21 wells) and modified with silver nanoparticle films (SNFs) to be used in microwave-accelerated bioassays (MABs). In addition, a small monomode microwave cavity, which can be operated with an external microwave generator (100 W), for use with the bioassay platforms in MABs is also developed. Our design parameters for the circular bioassay platforms and monomode microwave cavity during microwave heating were: (i) temperature profiles, (ii) electric field distributions, (iii) location of the circular bioassay platforms inside the microwave cavity, and (iv) design and number of wells on the circular bioassay platforms. We have also carried out additional simulations to assess the use of circular bioassay platforms in a conventional kitchen microwave oven (e.g., 900 W). Our results show that the location of the circular bioassay platforms in the microwave cavity was predicted to have a significant effect on the homogeneous heating of these platforms. The 21-well circular bioassay platform design in our monomode microwave cavity was predicted to offer a homogeneous heating pattern, where inter-well temperature was observed to be in between 23.72–24.13°C and intra-well temperature difference was less than 0.21°C for 60 seconds of microwave heating, which was also verified experimentally.
机译:在本文中,我们使用理论计算(即COMSOL™多物理场软件)介绍了四种适用于均匀微波加热的圆形生物测定平台。圆形生物测定平台由聚甲基丙烯酸甲酯(PMMA)制成,可实现400-800 nm的光学透明性,具有多个样品容量(12、16、19和21孔),并用银纳米颗粒薄膜(SNF)进行了改性,可用于微波加速生物测定(MAB)。此外,还开发了一个小型单模微波腔,该腔可与外部微波发生器(100 W)配合使用,与MAB中的生物测定平台一起使用。我们在微波加热过程中对圆形生物测定平台和单模微波腔的设计参数为:(i)温度曲线,(ii)电场分布,(iii)圆形生物测定平台在微波腔内的位置,以及(iv)设计和圆形生物测定平台上的孔数。我们还进行了其他模拟,以评估常规厨房微波炉(例如900 W)中圆形生物测定平台的使用情况。我们的结果表明,圆形生物测定平台在微波腔中的位置预计会对这些平台的均匀加热产生重大影响。预测我们单模微波腔中的21孔圆形生物测定平台设计将提供均匀的加热模式,其中观察到的孔间温度在23.72-24.13°C之间,并且孔内温差小于0.21°C持续60秒的微波加热,这也已通过实验验证。

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