3D sheep rumen epithelial structures driven from single cells in vitro

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作者
Zebang Xu
Xinxin Xu
Bin Yang
Yuling Mi
Jiakun Wang
机构
[1] Zhejiang University,Institute of Dairy Science, College of Animal Sciences
[2] Zhejiang University,MoE Key Laboratory of Molecular Animal Nutrition
[3] Zhejiang University,Department of Veterinary Medicine, College of Animal Sciences
[4] Zhejiang University of Science and Technology,School of Biological and Chemical Engineering
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关键词
Rumen epithelium; organoid; 3D culture; RNA-seq;
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摘要
Ruminants play a vital economic role as livestock, providing high-quality protein for humans. At present, 3D-cultured ruminant abomasum and intestinal organoids have been successfully established to study host and pathogen interaction. The rumen is a unique digestive organ of ruminants that occupies 70% of the volume of the digestive tract and its microbiota can decompose lignocellulose to support animal growth. Here we report a method for culturing rumen epithelial organoids. We found that single rumen epithelial cells form self-organized 3D structures representative of typical stratified squamous epithelium, which is similar to rumen epithelium. EGF, Noggin, Wnt3a, IGF-1, and FGF-10 significantly enhanced the seeding efficiency of organoids. Moreover, the inclusion of CHIR-99021, A83-01, SB202190, and Y-27632 is crucial for organoid formation and maintenance. Importantly, we demonstrate that rumen epithelial cells retain their ability to form organoids after passage, cryopreservation, and resuscitation. The rumen epithelial organoids express rumen cell type-specific genes, uptake fatty acids, and generate 2D cultures. In summary, our data demonstrate that it is feasible to establish organoids from single rumen epithelial cells, which is a novel in vitro system that may reduce the use of experimental animals.
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