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Spatial Single-cell Technologies for Exploring Gastrointestinal Tissue Transcriptome

delete2023-06-26
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PRE
AI
H
Hyun Min Kang
J
Jun Hee Lee *
DOI:10.1002/cphy.c210053delete
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Abstract

Abstract

En 中文
In the gastrointestinal (GI) system, like in other organ systems, the histological structure is a key determinant of physiological function. Tissues form multiple layers in the GI tract to perform their specialized functions in secretion, absorption, and motility. Even at the single layer, the heterogeneous cell population performs a diverse range of digestive or regulatory functions. Although many details of such functions at the histological and cell biological levels were revealed by traditional methods such as cell sorting, isolation, and culture, as well as histological methods such as immunostaining and RNA in situ hybridization, recent advances in spatial single-cell technologies could further contribute to our understanding of the molecular makeup of GI histological structures by providing a genome-wide overview of how different genes are expressed across individual cells and tissue layers. The current minireview summarizes recent advances in the spatial transcriptomics field and discusses how such technologies can promote our understanding of GI physiology.& COPY; 2023 American Physiological Society. Compr Physiol 13:4709-4718, 2023.
Keywords:
GENOME-WIDE EXPRESSION
GENE-EXPRESSION
RNA-SEQ
RECONSTRUCTION
PROTEINS
ATLAS

Journal

Comprehensive Physiology cover
Comprehensive Physiology
IF:
5.2
Papers:
923
Citations:
8.4K

Organization

U
University of Michigan
Scholars:
6.4W
Papers: 5.3W
Citations: 124
U
university of michigan system
Scholars:
9.1W
Papers: 8.6W
Citations: 133