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Relationships between neurokinin receptor-expressing interstitial cells of Cajal and tachykininergic nerves in the gut

The so-called interstitial cells of Cajal (ICC) are distributed throughout the muscle coat of the alimentary tract with characteristic intramual location and species-variations in structure and staining. Several ICC sub-types have been identified: ICC-DMP, ICC-MP, ICC-IM, ICC-SM. Gut motility is reg...

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Autor principal: Faussone-Pellegrini, Maria-Simonetta
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Ltd 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3933099/
https://www.ncbi.nlm.nih.gov/pubmed/16563219
http://dx.doi.org/10.1111/j.1582-4934.2006.tb00288.x
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author Faussone-Pellegrini, Maria-Simonetta
author_facet Faussone-Pellegrini, Maria-Simonetta
author_sort Faussone-Pellegrini, Maria-Simonetta
collection PubMed
description The so-called interstitial cells of Cajal (ICC) are distributed throughout the muscle coat of the alimentary tract with characteristic intramual location and species-variations in structure and staining. Several ICC sub-types have been identified: ICC-DMP, ICC-MP, ICC-IM, ICC-SM. Gut motility is regulated by ICC and each sub-type is responsible for the electrical activities typical of each gut region and/or muscle layer. The interstitial position of the ICC between nerve endings contain tachykinins. Three distinct tachykinin receptors (NK1r, NK2r and NK3r) have been demonstrated by molecular biology. Each of them binds with different affinities to a series of tachykinins (SP, NKA and NKB). In the ileum, SP-immunoreactive (SP-IR) nerve fibers form a rich plexus at the deep muscular plexus (DMP), distributed around SP-negative cells, and ICC-DMP intensely express the SP-preffered receptor NK1r; conversely a faint NK1r-IR is detected on the ICC-MP and mainly after receptor internalization was induced by agonists. ICC-IM are never stained in laboratory mammals, while those of the human, antrum are NK1r-IR. RT-PCR conducted on isolated idleal ICC-MP and gastric ICC-IM showed that these cells express NK1r and NK3r. Colonic ICC, except those in humans, do not express NK1r-IR, at least in resting conditions. Outside the gut, NK1r-IR cells were seen in the arterial wall and exocrine pancreas. In the mouse gut only, NK1r-IR is present in non-neuronal cells located within the intestinal villi, so-called myoid cells, which are c-kit-negative and α-smooth muscle actin-positive. Immunohistochemistry and functional studies confirmed that ICC receive input from SP-IR terminals, with differences between ICC sub-types. In the rat, very early after birth, NK1r is expressed by the ICC-DMP and SP by the related nerve varicosities. Studies on pathological conditions are few and those on mutant strains practically absent. It has only been reported that in the inflamed ileum of rats the NK1r-IR ICC-DMP disappear and that at the peak of inflammatory conditions ICC-MP are NK1r-IR. In ileum of mice with a mutation in the W locus, ICC-DMP were seen to express c-kit-IR but not NK1-IR, and SP-IR innervation seems unchanged. In summary, there are distinct ICC populations, each of them under a different tachkininergic control and, likely, having different functions. Further studies are recommended at the aim of understanding ICC involvement in modulating/transmitting tachykininergic inputs.
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spelling pubmed-39330992015-07-06 Relationships between neurokinin receptor-expressing interstitial cells of Cajal and tachykininergic nerves in the gut Faussone-Pellegrini, Maria-Simonetta J Cell Mol Med Interstitial Cells of Cajal Review Series The so-called interstitial cells of Cajal (ICC) are distributed throughout the muscle coat of the alimentary tract with characteristic intramual location and species-variations in structure and staining. Several ICC sub-types have been identified: ICC-DMP, ICC-MP, ICC-IM, ICC-SM. Gut motility is regulated by ICC and each sub-type is responsible for the electrical activities typical of each gut region and/or muscle layer. The interstitial position of the ICC between nerve endings contain tachykinins. Three distinct tachykinin receptors (NK1r, NK2r and NK3r) have been demonstrated by molecular biology. Each of them binds with different affinities to a series of tachykinins (SP, NKA and NKB). In the ileum, SP-immunoreactive (SP-IR) nerve fibers form a rich plexus at the deep muscular plexus (DMP), distributed around SP-negative cells, and ICC-DMP intensely express the SP-preffered receptor NK1r; conversely a faint NK1r-IR is detected on the ICC-MP and mainly after receptor internalization was induced by agonists. ICC-IM are never stained in laboratory mammals, while those of the human, antrum are NK1r-IR. RT-PCR conducted on isolated idleal ICC-MP and gastric ICC-IM showed that these cells express NK1r and NK3r. Colonic ICC, except those in humans, do not express NK1r-IR, at least in resting conditions. Outside the gut, NK1r-IR cells were seen in the arterial wall and exocrine pancreas. In the mouse gut only, NK1r-IR is present in non-neuronal cells located within the intestinal villi, so-called myoid cells, which are c-kit-negative and α-smooth muscle actin-positive. Immunohistochemistry and functional studies confirmed that ICC receive input from SP-IR terminals, with differences between ICC sub-types. In the rat, very early after birth, NK1r is expressed by the ICC-DMP and SP by the related nerve varicosities. Studies on pathological conditions are few and those on mutant strains practically absent. It has only been reported that in the inflamed ileum of rats the NK1r-IR ICC-DMP disappear and that at the peak of inflammatory conditions ICC-MP are NK1r-IR. In ileum of mice with a mutation in the W locus, ICC-DMP were seen to express c-kit-IR but not NK1-IR, and SP-IR innervation seems unchanged. In summary, there are distinct ICC populations, each of them under a different tachkininergic control and, likely, having different functions. Further studies are recommended at the aim of understanding ICC involvement in modulating/transmitting tachykininergic inputs. John Wiley & Sons, Ltd 2006-01 2007-03-15 /pmc/articles/PMC3933099/ /pubmed/16563219 http://dx.doi.org/10.1111/j.1582-4934.2006.tb00288.x Text en
spellingShingle Interstitial Cells of Cajal Review Series
Faussone-Pellegrini, Maria-Simonetta
Relationships between neurokinin receptor-expressing interstitial cells of Cajal and tachykininergic nerves in the gut
title Relationships between neurokinin receptor-expressing interstitial cells of Cajal and tachykininergic nerves in the gut
title_full Relationships between neurokinin receptor-expressing interstitial cells of Cajal and tachykininergic nerves in the gut
title_fullStr Relationships between neurokinin receptor-expressing interstitial cells of Cajal and tachykininergic nerves in the gut
title_full_unstemmed Relationships between neurokinin receptor-expressing interstitial cells of Cajal and tachykininergic nerves in the gut
title_short Relationships between neurokinin receptor-expressing interstitial cells of Cajal and tachykininergic nerves in the gut
title_sort relationships between neurokinin receptor-expressing interstitial cells of cajal and tachykininergic nerves in the gut
topic Interstitial Cells of Cajal Review Series
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3933099/
https://www.ncbi.nlm.nih.gov/pubmed/16563219
http://dx.doi.org/10.1111/j.1582-4934.2006.tb00288.x
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