Department for Micro and Nanotechnology, Technical University of Denmark, Ørsteds Plads Building 345C, 2800 Kgs. Lyngby, Denmark.
Lab Chip. 2018 Jun 26;18(13):1891-1902. doi: 10.1039/c8lc00169c.
Sequencing the genomes of individual cells enables the direct determination of genetic heterogeneity amongst cells within a population. We have developed an injection-moulded valveless microfluidic device in which single cells from colorectal cancer derived cell lines (LS174T, LS180 and RKO) and fresh colorectal tumors have been individually trapped, their genomes extracted and prepared for sequencing using multiple displacement amplification (MDA). Ninety nine percent of the DNA sequences obtained mapped to a reference human genome, indicating that there was effectively no contamination of these samples from non-human sources. In addition, most of the reads are correctly paired, with a low percentage of singletons (0.17 ± 0.06%) and we obtain genome coverages approaching 90%. To achieve this high quality, our device design and process shows that amplification can be conducted in microliter volumes as long as the lysis is in sub-nanoliter volumes. Our data thus demonstrates that high quality whole genome sequencing of single cells can be achieved using a relatively simple, inexpensive and scalable device. Detection of genetic heterogeneity at the single cell level, as we have demonstrated for freshly obtained single cancer cells, could soon become available as a clinical tool to precisely match treatment with the properties of a patient's own tumor.
对单个细胞的基因组进行测序,可以直接确定群体中细胞之间的遗传异质性。我们开发了一种注塑成型的无阀微流控设备,可以单独捕获来自结直肠癌细胞系(LS174T、LS180 和 RKO)和新鲜结直肠肿瘤的单个细胞,提取它们的基因组,并使用多次置换扩增(MDA)进行测序准备。获得的 99%的 DNA 序列都映射到人类参考基因组,表明这些样本没有受到非人类来源的污染。此外,大多数读取都是正确配对的,单链的比例很低(0.17±0.06%),我们获得的基因组覆盖率接近 90%。为了实现这种高质量,我们的设备设计和工艺表明,只要裂解体积在纳升级以下,就可以在微升级体积中进行扩增。因此,我们的数据表明,使用相对简单、廉价且可扩展的设备可以实现高质量的单细胞全基因组测序。正如我们在新获得的单个癌细胞中所证明的那样,在单细胞水平上检测遗传异质性,很快就可以作为一种临床工具,精确地将治疗与患者自身肿瘤的特性相匹配。