碱基
DNA
核酸
胞嘧啶
微流控
化学计量学
计算生物学
化学
生物分子
核酸定量
纳米技术
生物系统
生物
生物化学
色谱法
材料科学
作者
Judit Morlà‐Folch,Hai‐nan Xie,Patricia Gisbert‐Quilis,Sara Gómez‐de Pedro,Nicolás Pazos‐Pérez,Ramón A. Álvarez‐Puebla,Luca Guerrini
标识
DOI:10.1002/anie.201507682
摘要
Abstract Recognition of chemical modifications in canonical nucleobases of nucleic acids is of key importance since such modified variants act as different genetic encoders, introducing variability in the biological information contained in DNA. Herein, we demonstrate the feasibility of direct SERS in combination with chemometrics and microfluidics for the identification and relative quantification of 4 different cytosine modifications in both single‐ and double‐stranded DNA. The minute amount of DNA required per measurement, in the sub‐nanogram regime, removes the necessity of pre‐amplification or enrichment steps (which are also potential sources of artificial DNA damages). These findings show great potentials for the development of fast, low‐cost and high‐throughput screening analytical devices capable of detecting known and unknown modifications in nucleic acids (DNA and RNA) opening new windows of activity in several fields such as biology, medicine and forensic sciences.
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