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Parasites and the neuroendocrine control of fish intestinal function: an ancient struggle between pathogens and host.

Giampaolo BosiBarbara J MaynardFlavio PironiBahram Sayyaf Dezfuli
Published in: Parasitology (2022)
Most individual fish in wild and farmed populations can be infected with parasites. Fish intestines can harbour protozoans, myxozoans and helminths, which include several species of digeneans, cestodes, nematodes and acanthocephalans. Enteric parasites often induce inflammation of the intestine; the pathogen provokes changes in the host physiology, which will be genetically selected for if they benefit the parasite. The host response to intestinal parasites involves neural, endocrine and immune systems and interaction among these systems is coordinated by hormones, chemokines, cytokines and neurotransmitters including peptides. Intestinal fish parasites have effects on the components of the enteric nervous and endocrine systems; mechanical/chemical changes impair the activity of these systems, including gut motility and digestion. Investigations on the role of the neuroendocrine system in response to fish intestinal parasites are very few. This paper provides immunohistochemical and ultrastructural data on effects of parasites on the enteric nervous system and the enteric endocrine system in several fish–parasite systems. Emphasis is on the occurrence of 21 molecules including cholecystokinin-8, neuropeptide Y, enkephalins, galanin, vasoactive intestinal peptide and serotonin in infected tissues.
Keyphrases
  • plasmodium falciparum
  • escherichia coli
  • machine learning
  • pseudomonas aeruginosa
  • biofilm formation
  • electronic health record
  • candida albicans
  • big data
  • genetic diversity
  • cystic fibrosis
  • amino acid