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AN INTEGRATED MICROFLUIDIC SYSTEM FOR EARLY DIASNOSIS OF BREAST CANCER IN LIQUID BIOPSY BY USING MICRORNA AND FET BIOSENSORS
Conference paper

AN INTEGRATED MICROFLUIDIC SYSTEM FOR EARLY DIASNOSIS OF BREAST CANCER IN LIQUID BIOPSY BY USING MICRORNA AND FET BIOSENSORS

Chi-Chien Huang, Yu-Husan Kuo, Yi-Sin Chen and Gwo-Bin Lee
Proceedings of the IEEE International Conference on Micro Electro Mechanical Systems (MEMS), Vol.2021-January, pp.318-321
01/2021

Abstract

Biosensor;Breast Cancer;CMOS;Field-Effect Transistor;Microfluidics;MicroRNA-195 Electronic Optical and Magnetic Materials Condensed Matter Physics Mechanical Engineering Electrical and Electronic Engineering

Breast cancer is one of the leading cancers among women globally with a high mortality rate if not diagnosed in early stages. Liquid biopsy could serve as a non-invasive method for early diagnosis of biomarkers (such as microRNA-195) in blood associated with breast cancer. In this study, we developed an integrated microfluidic system for detecting targeted microRNA-195 by using field-effective-transistor biosensors to quantify an extremely low concentration of microRNA after extraction of extracellular vesicles and microRNAs in plasma. The entire process could be automated with a limit of detection as low as 1 fM. It could be therefore promising for accurate and rapid diagnosis of breast cancer.

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