Establishment and characterization of an immortalized bovine intestinal epithelial cell line

Author:

Meng Sudan12,Wang Y uexin1,Wang Shuai1,Qian Weifeng1,Shao Qi1,Dou Mengying1,Zhao Shujuan1,Wang Jianguo3,Li Mengyun1,An Yongsheng1,He Lei1,Zhang Cai14ORCID

Affiliation:

1. Henan International Joint Laboratory of Animal Welfare and Health Breeding, Henan University of Science and Technology , Luoyang 471023 , China

2. Innovative Research Team of Livestock Intelligent Breeding and Equipment, Longmen Laboratory , Luoyang 471023 , China

3. College of Veterinary Medicine, Northwest A&F University , Yangling 712100 , China

4. Henan Engineering Research Center of Livestock and Poultry Eerging Disease Detection and Control , Luoyang 471023 , China

Abstract

Abstract Primary bovine intestinal epithelial cells (PBIECs) are an important model for studying the molecular and pathogenic mechanisms of diseases affecting the bovine intestine. It is difficult to obtain and grow PBIECs stably, and their short lifespan greatly limits their application. Therefore, the purpose of this study was to create a cell line for exploring the mechanisms of pathogen infection in bovine intestinal epithelial cells in vitro. We isolated and cultured PBIECs and established an immortalized BIEC line by transfecting PBIECs with the pCI-neo-hTERT (human telomerase reverse transcriptase) recombinant plasmid. The immortalized cell line (BIECs-21) retained structure and function similar to that of the PBIECs. The marker proteins characteristic of epithelial cells, cytokeratin 18, occludin, zonula occludens protein 1 (ZO-1), E-cadherin and enterokinase, were all positive in the immortalized cell line, and the cell structure, growth rate, karyotype, serum dependence and contact inhibition were normal. The hTERT gene was successfully transferred into BIECs-21 where it remained stable and was highly expressed. The transport of short-chain fatty acids and glucose uptake by the BIECs-21 was consistent with PBIECs, and we showed that they could be infected with the intestinal parasite, Neospora caninum. The immortalized BIECs-21, which have exceeded 80 passages, were structurally and functionally similar to the primary BIECs and thus provide a valuable research tool for investigating the mechanism of pathogen infection of the bovine intestinal epithelium in vitro.

Publisher

Oxford University Press (OUP)

Subject

Genetics,Animal Science and Zoology,General Medicine,Food Science

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