胰腺
核心
电池类型
腺泡细胞
核糖核酸
肠内分泌细胞
荧光原位杂交
原位杂交
胰腺炎
细胞
细胞生物学
内分泌系统
生物
病理
基因
基因表达
内科学
内分泌学
遗传学
医学
染色体
激素
作者
Luca Tosti,Yan Hang,Olivia Debnath,Sebastian Tiesmeyer,Timo B. Trefzer,Katja Steiger,Foo Wei Ten,Soeren Lukassen,Simone Ballke,Anja A. Kühl,Simone Spieckermann,Rita Bottino,Naveed Ishaque,Wilko Weichert,Seung K. Kim,Roland Eils,Christian Conrad
出处
期刊:Gastroenterology
[Elsevier]
日期:2020-11-16
卷期号:160 (4): 1330-1344.e11
被引量:154
标识
DOI:10.1053/j.gastro.2020.11.010
摘要
Molecular evidence of cellular heterogeneity in the human exocrine pancreas has not been yet established because of the local concentration and cascade of hydrolytic enzymes that can rapidly degrade cells and RNA upon pancreatic resection. We sought to better understand the heterogeneity and cellular composition of the pancreas in neonates and adults in healthy and diseased conditions using single-cell sequencing approaches.We innovated single-nucleus RNA-sequencing protocols and profiled more than 120,000 cells from pancreata of adult and neonatal human donors. We validated the single-nucleus findings using RNA fluorescence in situ hybridization, in situ sequencing, and computational approaches.We created the first comprehensive atlas of human pancreas cells including epithelial and nonepithelial constituents, and uncovered 3 distinct acinar cell types, with possible implications for homeostatic and inflammatory processes of the pancreas. The comparison with neonatal single-nucleus sequencing data showed a different cellular composition of the endocrine tissue, highlighting the tissue dynamics occurring during development. By applying spatial cartography, involving cell proximity mapping through in situ sequencing, we found evidence of specific cell type neighborhoods, dynamic topographies in the endocrine and exocrine pancreas, and principles of morphologic organization of the organ. Furthermore, similar analyses in chronic pancreatitis biopsy samples showed the presence of acinar-REG+ cells, a reciprocal association between macrophages and activated stellate cells, and a new potential role of tuft cells in this disease.Our human pancreas cell atlas can be interrogated to understand pancreatic cell biology and provides a crucial reference set for comparisons with diseased tissue samples to map the cellular foundations of pancreatic diseases.
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