化学
混合器
突变体
胎儿游离DNA
聚合酶链反应
DNA
DNA提取
突变
微流控芯片
微流控
基因
分子生物学
生物
遗传学
纳米技术
生物化学
产前诊断
怀孕
材料科学
胎儿
作者
Yu-Hung Cheng,Chih‐Hung Wang,Keng‐Fu Hsu,Gwo‐Bin Lee
标识
DOI:10.1021/acs.analchem.1c04988
摘要
Ovarian cancer (OvCa) is among the most severe gynecologic cancers, yet individuals may be asymptomatic during its early stages. Routine, early screening for genetic abnormalities associated with OvCa could improve prognoses, and this can be achieved by detecting mutant genes in cell-free DNA (cfDNA). Herein, we developed an integrated microfluidic chip (IMC) that could extract cfDNA from plasma and automatically detect and quantify mutations in the OvCa biomarker BRCA1. The cfDNA extraction module relied on a vortex-type micromixer to mix cfDNA with magnetic beads surface-coated with cfDNA probes and could isolate 76% of molecules from a 200 μL plasma sample in 45 min. The cfDNA quantification module, which comprised a micropump that evenly distributed 4.5 μL of purified cfDNA into the on-chip, allele-specific quantitative polymerase chain reaction (qPCR) zones, was capable of quantifying mutant genes within 90 min. By automating the cfDNA extraction and qPCR processes, this IMC could be used for clinical screening for OvCa-associated mutations.
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