首页> 外文期刊>BioTechnology: An Indian Journal >Improved Mixing Efficiency and Scaling of Microfluidic Mixer for miRNA Based Diagnostics
【24h】

Improved Mixing Efficiency and Scaling of Microfluidic Mixer for miRNA Based Diagnostics

机译:用于基于miRNA的诊断的改进的混合效率和微流控混合器的缩放比例

获取原文
       

摘要

Diagnostics and prognostics have made revolutionary changes with the advent of Micro RNA (miRNA) biomarker based detection of diseases. Currently, much research attention is on designing and developing suitable microfluidic platforms for lab-on-chip type configuration of diagnostic devices. In this paper, a microfluidic nanoscale fluid mixer for hybridizing target miRNA with its conjugate probe was designed and its performance was evaluated. In a microfluidic channel, the fluid flow is laminar, and mixing can happen by way of convection and diffusion. The governing equations of low Reynolds number flows in microchannel include additional terms to the continuity equation and the classical Navier-Stokes equations to incorporate mass transfer effects. Moreover, since there is a diffusion component in the continuity, momentum and energy equations, they need to be solved as simultaneous equations. Comsol Multiphysics 5.2a is capable of modeling such flows and is used for the simulation of the mixer. The principle used for detection of target miRNA is based on fluorescence detection upon hybridization with a quenched probe. In this study, mixers were designed aiming at better hybridization by adding mechanical structures to increase the interaction between the fluid streams and improve the convective contribution to the mixing process. Three types of microfluidic mixers were designed and fabricated with pillar structures for altering the flow pattern in different manners to enhance the hybridization for detection of target miRNA and the performance is compared with a plain T mixer. The design parameter of interest is the length of the channel which is sufficient for hybridization for a chosen flow rate. A study is performed to assess the mixing effectiveness at various lengths for a channel of fixed length. The major conclusion is that the mixer with zig-zag structure provides the best mixing among the three structures tested, where convection and diffusion were both contributing to mixing, with the convective component significantly enhanced compared to the plain T mixer. The fabricated devices were Y type for simplicity.
机译:随着基于Micro RNA(miRNA)生物标志物的疾病检测的出现,诊断和预后发生了革命性的变化。当前,许多研究注意力集中在设计和开发用于诊断设备的芯片上实验室类型配置的合适的微流体平台上。本文设计了一种用于将目标miRNA与其共轭探针杂交的微流控纳米流体混合器,并对其性能进行了评估。在微流体通道中,流体流是层流的,并且混合可以通过对流和扩散的方式发生。微通道中低雷诺数流量的控制方程式包括连续性方程式和经典Navier-Stokes方程式的附加项,以纳入传质效应。此外,由于在连续性,动量和能量方程中存在扩散分量,因此需要将它们作为联立方程进行求解。 Comsol Multiphysics 5.2a能够对此类流进行建模,并用于混合器的仿真。用于检测靶标miRNA的原理是基于与淬灭探针杂交后的荧光检测。在这项研究中,设计混合器的目的是通过添加机械结构来增加流体流之间的相互作用并改善对流过程对混合过程的影响,从而实现更好的杂交。设计并制造了三种具有柱结构的微流混合器,用于以不同方式改变流动模式以增强杂交以检测目标miRNA,并将其性能与普通T混合器进行了比较。感兴趣的设计参数是通道的长度,对于选定的流速,该长度足以进行杂交。进行了一项研究,以评估固定长度通道在各种长度下的混合效果。主要结论是,具有锯齿形结构的混合器在三种测试结构中提供了最佳混合效果,其中对流和扩散均有助于混合,与普通T形混合器相比,对流成分显着增强。为简单起见,所制造的器件为Y型。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号