Huang Huan, Li Shuo, Sun Lizhou, Zhou Guohua
The First Affiliated Hospital of Nanjing Medical University, Nanjing, China.
Nanjing Xiaozhuang University, Nanjing, China.
PLoS One. 2015 Apr 16;10(4):e0123420. doi: 10.1371/journal.pone.0123420. eCollection 2015.
To simultaneously analyze mutations and expression levels of multiple genes on one detection platform, we proposed a method termed "multiplex ligation-dependent probe amplification-digital amplification coupled with hydrogel bead-array" (MLPA-DABA) and applied it to diagnose colorectal cancer (CRC). CRC cells and tissues were sampled to extract nucleic acid, perform MLPA with sequence-tagged probes, perform digital emulsion polymerase chain reaction (PCR), and produce a hydrogel bead-array to immobilize beads and form a single bead layer on the array. After hybridization with fluorescent probes, the number of colored beads, which reflects the abundance of expressed genes and the mutation rate, was counted for diagnosis. Only red or green beads occurred on the chips in the mixed samples, indicating the success of single-molecule PCR. When a one-source sample was analyzed using mixed MLPA probes, beads of only one color occurred, suggesting the high specificity of the method in analyzing CRC mutation and gene expression. In gene expression analysis of a CRC tissue from one CRC patient, the mutant percentage was 3.1%, and the expression levels of CRC-related genes were much higher than those of normal tissue. The highly sensitive MLPA-DABA succeeds in the relative quantification of mutations and gene expressions of exfoliated cells in stool samples of CRC patients on the same chip platform. MLPA-DABA coupled with hydrogel bead-array is a promising method in the non-invasive diagnosis of CRC.
为了在一个检测平台上同时分析多个基因的突变和表达水平,我们提出了一种名为“多重连接依赖探针扩增 - 数字扩增结合水凝胶微珠阵列”(MLPA - DABA)的方法,并将其应用于结直肠癌(CRC)的诊断。采集CRC细胞和组织以提取核酸,用序列标记探针进行MLPA,进行数字乳液聚合酶链反应(PCR),并制作水凝胶微珠阵列以固定微珠并在阵列上形成单微珠层。与荧光探针杂交后,计数反映表达基因丰度和突变率的有色微珠数量以进行诊断。混合样品芯片上仅出现红色或绿色微珠,表明单分子PCR成功。当使用混合MLPA探针分析单源样品时,仅出现一种颜色的微珠,表明该方法在分析CRC突变和基因表达方面具有高特异性。在对一名CRC患者的CRC组织进行基因表达分析时,突变百分比为3.1%,CRC相关基因的表达水平远高于正常组织。高灵敏度的MLPA - DABA成功地在同一芯片平台上对CRC患者粪便样本中的脱落细胞的突变和基因表达进行了相对定量。结合水凝胶微珠阵列的MLPA - DABA是CRC无创诊断中一种有前景的方法。