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      Intestinal histology and stereology in rainbow trout (Oncorhynchus mykiss ) administrated with nanochitosan/zeolite and chitosan/zeolite composites

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          Mucin structure, aggregation, physiological functions and biomedical applications

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            Current research status of fish immunostimulants

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              Teleost intestinal immunology.

              Teleosts clearly have a more diffuse gut associated lymphoid system, which is morphological and functional clearly different from the mammalian GALT. All immune cells necessary for a local immune response are abundantly present in the gut mucosa of the species studied and local immune responses can be monitored after intestinal immunization. Fish do not produce IgA, but a special mucosal IgM isotype seems to be secreted and may (partly) be the recently described IgZ/IgT. Fish produce a pIgR in their mucosal tissues but it is smaller (2 ILD) than the 4-5 ILD pIgR of higher vertebrates. Whether teleost pIgR is transcytosed and cleaved off in the same way needs further investigation, especially because a secretory component (SC) is only reported in one species. Teleosts also have high numbers of IEL, most of them are CD3-ɛ+/CD8-α+ and have cytotoxic and/or regulatory function. Possibly many of these cells are TCRγδ cells and they may be involved in the oral tolerance induction observed in fish. Innate immune cells can be observed in the teleost gut from first feeding onwards, but B cells appear much later in mucosal compartments compared to systemic sites. Conspicuous is the very early presence of putative T cells or their precursors in the fish gut, which together with the rag-1 expression of intestinal lymphoid cells may be an indication for an extra-thymic development of certain T cells. Teleosts can develop enteritis in their antigen transporting second gut segment and epithelial cells, IEL and eosinophils/basophils seem to play a crucial role in this intestinal inflammation model. Teleost intestine can be exploited for oral vaccination strategies and probiotic immune stimulation. A variety of encapsulation methods, to protect vaccines against degradation in the foregut, are reported with promising results but in most cases they appear not to be cost effective yet. Microbiota in fish are clearly different from terrestrial animals. In the past decade a fast increasing number of papers is dedicated to the oral administration of a variety of probiotics that can have a strong health beneficial effect, but much more attention has to be paid to the immune mechanisms behind these effects. The recent development of gnotobiotic fish models may be very helpful to study the immune effects of microbiota and probiotics in teleosts. Copyright © 2010 Elsevier Ltd. All rights reserved.
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                Author and article information

                Journal
                Aquaculture Research
                Aquac Res
                Wiley
                1355557X
                May 2018
                May 2018
                February 19 2018
                : 49
                : 5
                : 1803-1815
                Affiliations
                [1 ]Department of Basic Sciences; Faculty of Veterinary Medicine; University of Tabriz; Tabriz Iran
                [2 ]Department of Food Hygiene and Aquatic Animals; Faculty of Veterinary Medicine; University of Tabriz; Tabriz Iran
                [3 ]Department of Fisheries, Sciences and Research Branch; Islamic Azad University; Tehran Iran
                [4 ]Department of Fisheries; Babol Branch; Islamic Azad University; Babol Iran
                [5 ]Research Center for Pharmaceutical Nanotechnology; Tabriz University of Medical Sciences; Tabriz Iran
                [6 ]Department of Inorganic Chemistry; Faculty of Chemistry; University of Tabriz; Tabriz Iran
                Article
                10.1111/are.13634
                47388474-a53f-4e6d-9289-2a0d2a540dee
                © 2018

                http://doi.wiley.com/10.1002/tdm_license_1.1

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