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Recent advances in spatially resolved transcriptomics: challenges and opportunitiesopen access

Authors
Lee, JongwonYoo, MinsuChoi, Jungmin
Issue Date
31-3월-2022
Publisher
KOREAN SOCIETY BIOCHEMISTRY & MOLECULAR BIOLOGY
Keywords
Spatially resolved transcriptomics; Single-cell RNA sequencing; Integrative computational algorithm; Multimodal data analysis
Citation
BMB REPORTS, v.55, no.3, pp.113 - 124
Indexed
SCIE
SCOPUS
KCI
Journal Title
BMB REPORTS
Volume
55
Number
3
Start Page
113
End Page
124
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/143119
DOI
10.5483/BMBRep.2022.55.3.014
ISSN
1976-6696
Abstract
Single-cell RNA sequencing (scRNA-seq) has greatly advanced our understanding of cellular heterogeneity by profiling individual cell transcriptomes. However, cell dissociation from the tissue structure causes a loss of spatial information, which hinders the identification of intercellular communication networks and global transcriptional patterns present in the tissue architecture. To overcome this limitation, novel transcriptomic platforms that preserve spatial information have been actively developed. Significant achievements in imaging technologies have enabled in situ targeted transcriptomic profiling in single cells at single-molecule resolution. In addition, technologies based on mRNA capture followed by sequencing have made possible profiling of the genome-wide transcriptome at the 55-100 mu m resolution. Unfortunately, neither imaging-based technology nor capture-based method elucidates a complete picture of the spatial transcriptome in a tissue. Therefore, addressing specific biological questions requires balancing experimental throughput and spatial resolution, mandating the efforts to develop computational algorithms that are pivotal to circumvent technology-specific limitations. In this review, we focus on the current state-of-the-art spatially resolved transcriptomic technologies, describe their applications in a variety of biological domains, and explore recent discoveries demonstrating their enoimous potential in biomedical research. We further highlight novel integrative computational methodologies with other data modalities that provide a framework to derive biological insight into heterogeneous and complex tissue organization.
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