4.5 Article

An ex vivo abomasal ovine model to study the immediate immune response in the context of Haemonchus contortus larval-stage

期刊

VETERINARY PARASITOLOGY
卷 254, 期 -, 页码 105-113

出版社

ELSEVIER
DOI: 10.1016/j.vetpar.2018.02.042

关键词

Haemonchus contortus; Illumina HiSeq 4000 platform; Immediate immune response; Gene ontology; Kyoto Encyclopedia of Genes and Genomes; Ovine abomasal explants; Galectin-1

资金

  1. Foshan University, Foshan city, Guangdong province
  2. Guangdong Science and Technology Plan Project [2012A020100001]
  3. National Key Basic Research Program (973 program) of China [2015CB150300]

向作者/读者索取更多资源

We have set up an ex vivo ovine abomasal model, which can mimic the multicellular process to explore the early steps in haemonchine nematode infection using RNA-seq technology. Ovine abomasal explants were collected for histological and transcriptional analysis and supernatants collected to quantitate lactate dehydrogenase (LDH) enzymes. Atotal of 233 were substantially induced genes between L4-inoculated and uninoculated-control tissues, respectively. However, a total of 14 were considerably down-regulated genes between the 51 aforementioned tissues. Fifteen pathways were annotated by Kyoto Encyclopedia of Genes, and Genomes pathway analysis accounted for the significant percentage in immediate response to larval-stage of H. contortus. Key genes upregulated in response to the addition of L4-inoculum of H. contortus were IL-6, IL-8, Clq, Atypical chemokine receptor-3, chemokine ligand-2, manganese superoxide dismutase, integrin alpha-7,-8,-9, integrin subunit beta 1, integrin subunit beta 6, intercellular adhesion molecule-1 and actin alpha-1. This study shows for the first time that galectin-1 is up-regulated in an ex vivo abomasal segment model exposed to L4-inoculum of H. contortus following 6 h of incubation. The abomasal segment model has been shown to be a suitable tool to study the haemonchine larval-stage effects on the ovine abomasal tissues prior to in vivo assessment.

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