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Disposable Smart Plastic Biochips For Clinical Diagnostics

机译:用于临床诊断的一次性智能塑料生物芯片

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摘要

This paper presents an overview of the development of novel disposable smart plastic fluidic biochips for clinical diagnostic applications. The biochip is manufactured using a low-cost, rapid turn around injection molding/embossing process on a plastic substrate. The plastic fluidic biochip uses a novel sPROMs (structurally programmable microfluidic system) approach to achieve passive control of fluidic sequencing. The plastic biochip also uses an on-chip pressurized air source for fluidic movement thus eliminating the need for active driving mechanisms and allowing for a truly disposable approach. Furthermore, electrochemical biosensors are also integrated on-chip to analyze various metabolically significant parameters such as P02 (partial pressure of oxygen), Glucose, Lactate, and pH. The fluidic biochip is being developed for point-of-care health monitoring applications where parameters such as small size, simplicity of operation, disposability, reduced cross-contamination are vital. The issues mentioned above are successfully addressed using the approach of this work and are discussed in this paper.
机译:本文概述了用于临床诊断应用的新型一次性智能塑料流体生物芯片的开发概况。使用低成本,快速周转的注塑/压花工艺在塑料基板上制造生物芯片。塑料流体生物芯片使用新颖的sPROM(结构可编程微流体系统)方法来实现流体测序的被动控制。塑料生物芯片还使用片上加压空气源进行流体运动,从而消除了对主动驱动机构的需求,并实现了真正的一次性方法。此外,电化学生物传感器也集成在芯片上,以分析各种代谢上重要的参数,例如P02(氧分压),葡萄糖,乳酸盐和pH。流体生物芯片正在开发用于即时医疗保健监测应用,在这些应用中,诸如小尺寸,操作简便,可处理性,减少交叉污染等参数至关重要。上面提到的问题已使用本文的方法成功解决,并将在本文中进行讨论。

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