| Literature DB >> 31391919 |
Xiaoning Tang1,2, Yongmei Huang1,2, Jinli Lei1,2, Hui Luo1,2, Xiao Zhu1,2.
Abstract
Single-cell sequencing technologies can be used to detect the genome, transcriptome and other multi-omics of single cells. They can show the differences and evolutionary relationships of various cells. This review introduces the latest advances in single-cell sequencing technologies and their applications in oncology, microbiology, neurology, reproduction, immunology, digestive and urinary systems, highlighting the important role that single-cell sequencing techniques play in these areas.Entities:
Keywords: Cancer; Clinical applications; Developments; Immunology; Single-cell sequencing technologies; Transcriptome
Year: 2019 PMID: 31391919 PMCID: PMC6595701 DOI: 10.1186/s13578-019-0314-y
Source DB: PubMed Journal: Cell Biosci ISSN: 2045-3701 Impact factor: 7.133
Fig. 1The principle of single-cell sequencing. It is a process of isolating a single cell for sequencing and studying cell heterogeneity, molecular mapping, immune infiltration and epigenetic changes
Single-cell sequencing technologies
| Single-cell sequencing | Characteristics | Functions |
|---|---|---|
| Separate application | ||
| SCI-seq3 | Single-cell combination marker | Construction of single-cell libraries and detection of cell copy number variation |
| LIANTI4 | Single cell whole genome amplification | Detection of cell copy number variation and disease-related mutations |
| scCOOL-seq5 | Single cell multiplex sequencing | Detection of chromatin status/nucleosome localization, DNA methylation, copy number variation and ploidy |
| TSCS6 | Provide accurate spatial location information | Describe the spatial characteristics of individual tumor cells |
| SiC-seq7 | High throughput and low deviation | Extensive genomic research on different cells |
| Microwell-seq8 | High throughput and low cost | Improve the detection abundance of single cell sequencing technology |
| SPLit-seq9 | Combine barcode principle and low cost | Single cell transcriptome sequencing |
| Joint application | ||
| CROP-seq10 | High throughput | Analysis of complex regulatory mechanisms and functions of heterogeneous cell populations |
| CRISPRi + scRNA-seq11 | High throughput | Analyze the function of regulatory elements and the relationship between regulatory elements and cells |
| Single-Nucleus RNA-Seq +DroNc-Seq12 | High sensitivity and high cell sorting efficiency | A variety of cells can be accurately analyzed. It may be used in the Human Cell Atlas Project in the future |
| snDrop-seq + scTHS-seq13 | High throughput | It can be used to detect nuclear transcripts and epigenetic features, or related analysis of frozen tissue in humans |
Fig. 2The clinical applications of single-cell sequencing in different fields, like cancer, immune system, reproductive system, microorganisms, etc. These will help to clarify some of the problems and provide a basis for finding better treatments