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IMMUNOHISTOCHEMICAL LOCALIZATION OF CHOLECYSTOKININ AND HISTAMINE IN GASTROINTESTINAL TRACT IN FLOWER FISH

Year 2006, Volume: 1 Issue: 1, 26 - 34, 01.06.2006

Abstract

Abstract: In this study, our aim was to determine the distribution of specific immunoreactivities against the antisera Cholecystokinin (CCK) and Histamine in some regions of the digestive tract of the flower fish (Pseudophoxinus antalyae). The samples were taken from the enlarged area after oesophagus and anterior, middle and posterior part of intestine, and the Avidin-Biotin-Immunoperoxidase method was applied. Histamine and Cholecystokinin immunoreactive cells were found to be more frequent in enlarged region after oesophagus than in gut. There immunoreactive cells were distributed among surface epithelium, epithelium between surface crypt, and crypts proper. Despite determination of Histamine immunoreactivity in enlarged region after oesophagus, connective tissue of intestine and ganglion cells, CCK immunoreactivity was not be detected in the same regions and cells. Key words: Pseudophoxinus antalyae, gastrointestinal tract, endocrine cells, immunohistochemistry

References

  • ABAD ME, BINKHORST FM, ELBAL MT & ROMBOUT JH, 1987. A Comparative immunocytochemical study of the gastro-entero-pancreatic (GEP) endocrine system in a stomachless and a stomach-containing teleost. General and Comparative Endocrinology, 66, 123-36.
  • BARRENECHEA MA, LOPEZ J & MARTINEZ A, 1994. Regulatory peptides in gastric endocrine cells of the rainbow trout (Oncorhynchus mykiss) general distribution and colocalizations. Tissue and Cell, 26, 309-321.
  • BHAGAVAN NV, 1992. Medical biochemistry. Jones and Bartlett Publishers, London, pp. 980.
  • BOUERLEGUI C, MARTINEZ A, SESMA P, 1992. Endocrine cells and nerves in the pyloric caeca and intestine of Oncorhynchus mykiss (teleostei): an immunocytochemical study. General and Comparative Endocrinology, 86, 483- 95.
  • BOMGREN P, EINARSSON S & JÖNSSON AC, 1998. Similarities and differences in oxyticopeptic cell ultrastructure of one marine teleost, Gadus morhua and one freshwater teleost, Oncorhynchus mykiss, during basal and histamine stimulated phases of acid secretion. Fish Physiology and Biochemistry, 18, 285-296.
  • BURRIN DG, STOLL B & GUAN X, 2003. Glucagon-like peptide 2 function in domestic animals. Domestic Animal Endocrinology, 24, 103-122.
  • CIMINI V, NOORDER S, NARDINI V, 1989. Peptides of the gastrointestinal tract of the dogfish (Scyliorhinus stellaris). 8th International Symp On Morphological Sciences, 146-57.
  • D’ESTE L, WIMALOWANSA SJ & RENDA TG, 1995. Amylin-immunoreactivity is co-stored in a serotonin cell subpopulation of the vertebrate stomach and duodenum. Archıves of Histology and Cytology, 58(5), 537-47.
  • DEZFULI BS, ARRIGHI S, DOMENEGHINI C & BOSI G, 2000. Immunohistochemical detection of neuromodulators in the intestine of Salmo trutta L. naturally infected with Cyathocephalus truncatus Pallas (Cestoda). Journal of Fish Diseases, 23, 265-273.
  • DEZFULI BS, PIRONI F, GIARI L, DOMENEGHINI C, BOSI G, 2002. Effect of Pomphorynchus laevis (Acanthocephala) on putative neuromodulator in the intestine of naturally infected Salmo trutta. Diseases of Aquatic Organs, 51, 27- 35.
  • DEZFULI BS, GIARI L, ARRIGHI S, DOMENEGHINI C & BOSI G, 2003. Influence of enteric helminths on the distribution of intestinal endocrine cells belonging to the diffuse endocrine system in Brown Trout, Salmo trutta L. Journal of Fish Diseases, 26, 155-166.
  • DOMENEGHINI C, RADAELLI G, ARRIGHI S, MASCARELLO F & VEGGETTİ A, 2000. Neurotransmitters and putative neuromodulators in the gut of Anguilla anguilla (L.) localizations in the enteric nervous and endocrine systems. Europen Journal of Histochemistry, 44, 295-306.
  • EINARSSON S & DAVIES DS, 1996. On the localization and ultrastructure of pepsinogen, trypsinogen, chymotrypsinogen secreting cells in the Atlantic Salmon, Salmo salar L. Comparative Biochemistry and Physiology Part B, 114, 295-301.
  • ELLIS AE, 1985. Eosinophilic granular cells (EGC) and histamine responses to toxins in Rainbow Trout. Developmental and Comparative Immunology, 9, 251-260.
  • FAIRGRIEVE WT, MYERS MS, HARDY RW & DONG FM, 1994. Gastric abnormalities in Rainbow Trout (Oncorhynchus mykiss) fed amine supplemented diets or chicken gizzard erosion positive fish meal. Aquaculture, 127, 219-232.
  • GIROLAMO P, LUCINI C, VEGA JA, REOZZI G, COPPOLA L & CASTALDO L, 1999. Co-Localization of trk neurotrophin receptors and regulatory peptides in the endocrine cells of the teleostean stomach. The Anatomical Record, 256, 219- 226.
  • HALPERT AG, OLMSTEAD MC, BENINGER RJ, 2002. Mechanisms and abuse liability of the anti-histamine dimenhydrinate. Neuroscience Biobehaviour Review, 26, 61-7.
  • HIMICK BA & PETER RE, 1994. CCK/Gastrin like ımmunreactivity in brain and gut, and CCK suppression of feeding in gold fish. Intergrative and Comparative Physiology, 267, 841-851.
  • HSU SM, RAINE L, FANGER H, 1981. Use of avidin-biotin-peroxidase complex (ABC) in immunoperoxidase techniques: a comparison between ABC and unlabeled antibody (PAP) procedures. The Journal of Histochemistry and Cytochemistry, 29, 577-580.
  • JÖNSSON AC, HOLMGREN S, HOLSTEIN B, 1987. Gastrin/CCK-like ımmunoreactivity in endocrine cells and nerves in the gastrointestinal tract of cod, Gadus morhua and the effect of peptides of Gastrin/CCK family on Cod gastrointestinal smooth muscle. General and Comparative Endocrinology, 66, 190-202.
  • KILIAAN AJ, SCHOLTEN G & GRAOT JA, 1997. Exocytotic release of vasoactive intestinal polypeptide and serotonin from mucosal nerve fibres and endocrine and the Tilapia (Oreochromis mossambicus): an ultrastructural study. Histochemical Journal, 29, 45-51.
  • KIM JB, GADSBOLL V, WHITTAKER J, BARTON BA & CONLON JM, 2000. Gastroenteropancreatic hormones (insulin, glucagon, somatostatin, and multiple forms of PYY) from the Pallid sturgeor, Scarphirhynchus albus (Acipenseriformes). General and Comparative Endocrinology, 120, 353-363.
  • KÖSE S & HALL G, 2000. Modification of a colorimetric method for histamine analysis in fish meal. Food Research International, 33, 839-845.
  • LEHNINGER, AL, NELSON, DL, COX, MM, 1993. Principles of Biochemistry. Worth Publishers, New York, pp. 1013.
  • LIU Y, TYTGAT GNJ, XIAO SD, TEN-KATE FJW, 2003. Gastric endocrine cells. Chinese Journal of Digestive Diseases, 4, 160-167.
  • LUCINI C, GIROLAMA P, MARUCCIO L, LAMANNA C, CASTALDO L. & VEGA JA, 1999. Trk-neurotrophin receptor-like immunreactivity in the gut of teleost species. Cell and Tissue Research, 262, 323-30.
  • MAAKE C, KAUFMANN C & REINECKE M, 2001. Ontogeny of neurohormonal peptides, serotonin and nitric oxide synthase in the gastrointestinal neuroendocrine system of the axolotl (Ambystoma mexicanum): an immunohistochemical analysis. General and Comparative Endocrinology, 121, 74-83.
  • MATHEWS CK, VAN HOLDE KE, 1996. Biochemistry. The Benjamin/Cummings Publishing Company, New York, 1159.
  • PALEOLOGOS EK, SAVVAIDIS IN & KONTOMINEAS MG, 2004. Biogenic amines formation and its relation to microbiological and sensory attributes in ice-stored whole gutted and filleted mediterranean Sea Bass (Dicentrarchus labrax). Food Microbiology, 21, 549-557.
  • PAN QS, FANG ZP, & HUANG FJ, 2000a. Identification, localization and morphology of APUD cells in gastroenteropancreatic system of stomach-containing teleosts. World Journal of Gastroenterology, 6, 842-847.
  • PAN QS, FANG ZP, & ZHAO YX, 2000b. Immunocytochemical identification and localization of APUD cells in the gut of seven stomachless teleost fishes. World Journal of Gastroenterology, 6, 96-101.
  • RAJJO IM, VIGNA SR & CRIM JW, 1988. Cholecystokinin immunreactivity in the digestive tract of Bowfin (Amia calva), Bluegill (Lepomis macrochirus) and Bulfrog (Rana Catesbeina). General and Comparative Endocrinolology, 70, 133-44.
  • REIFEL CW, 1988. Endocrine cells in the gastrointestinal tract of a stomachless teleostean fish. Anatomia Anz, 167, 259-63.
  • REITE OB, 1997. Mast cells eosinophilic granule cells of salmonids staining properties and response to noxious agents. Fish and Shellfish Immunology, 7, 567-584.
  • RONNESTAD I, TONHEIM SK, FYHN HJ, ROJAS-GARCIA CR, KAMISAKA Y, KOVEN W, FINN R N, TERJESEN BF, BARR Y & CONCEICAO LEC, 2003. The supply of amino acids during early feeding stages of marine fish larvae; a review of recent findings. Aquacultura, 227, 147-164.
  • SCHEUERMANN DW, ADRIAENSEN D, TIMMERMANS JP & DE GROODT- LASSEEL MH, 1991. Immunohistochemical localization of polypeptide hormones in pancreatic endocrine cells of a dipnoan fish, Protopterus aethiopicus. Acta Histochemical, 91, 185-92.
  • TELATAR H, ŞIMŞEK H, 1993. Gastroenteroloji. Hacettepe üniversitesi tıp fakültesi iç hastalıkları ABD gastroenteroloji: ünitesi Hekimler Yayın Birliği, Ankara, pp. 551.
  • VIGNA SR, FISCHER BL, MORGAN JLM, ROSENQUIST GL, 1985. Distribution and molecular heterogenity of cholecystokinin like ımmunreactive peptides in the brain and gut of the Rainbow Trout, Salmo gairdneri. Comparative. Biochemistry Physiology, 82, 143-46.
  • YANAI K, SON LZ, ENDOU M, SAKURAI E, NAKAGAWASA, O, TADANO T, KISARA K, INOUE I, WATANABE T, 1998. behavioural characterization and amounts of brain monoamines and their metabolites in mice lacking histamine h1 receptors. Neuroscience, 87, 479-87.
  • YOUSON JH, AL-MAHROUKI AA, NAUMOVSKI D & CONLON JM, 2001. The endocrine cells in the gastroenteropancreatic system of the Bowfin, Amia calva L: an ımmunohistochemical, ultrastructural and immunohistochemical analysis. Journal of Morphology, 250, 208-24.

IMMUNOHISTOCHEMICAL LOCALIZATION OF CHOLECYSTOKININ AND HISTAMINE IN GASTROINTESTINAL TRACT IN FLOWER FISH

Year 2006, Volume: 1 Issue: 1, 26 - 34, 01.06.2006

Abstract

Abstract: In this study, our aim was to determine the distribution of specific immunoreactivities against the antisera Cholecystokinin (CCK) and Histamine in some regions of the digestive tract of the flower fish (Pseudophoxinus antalyae). The samples were taken from the enlarged area after oesophagus and anterior, middle and posterior part of intestine, and the Avidin-Biotin-Immunoperoxidase method was applied. Histamine and Cholecystokinin immunoreactive cells were found to be more frequent in enlarged region after oesophagus than in gut. There immunoreactive cells were distributed among surface epithelium, epithelium between surface crypt, and crypts proper. Despite determination of Histamine immunoreactivity in enlarged region after oesophagus, connective tissue of intestine and ganglion cells, CCK immunoreactivity was not be detected in the same regions and cells.

Key words: Pseudophoxinus antalyae, gastrointestinal tract, endocrine cells, immunohistochemistry

References

  • ABAD ME, BINKHORST FM, ELBAL MT & ROMBOUT JH, 1987. A Comparative immunocytochemical study of the gastro-entero-pancreatic (GEP) endocrine system in a stomachless and a stomach-containing teleost. General and Comparative Endocrinology, 66, 123-36.
  • BARRENECHEA MA, LOPEZ J & MARTINEZ A, 1994. Regulatory peptides in gastric endocrine cells of the rainbow trout (Oncorhynchus mykiss) general distribution and colocalizations. Tissue and Cell, 26, 309-321.
  • BHAGAVAN NV, 1992. Medical biochemistry. Jones and Bartlett Publishers, London, pp. 980.
  • BOUERLEGUI C, MARTINEZ A, SESMA P, 1992. Endocrine cells and nerves in the pyloric caeca and intestine of Oncorhynchus mykiss (teleostei): an immunocytochemical study. General and Comparative Endocrinology, 86, 483- 95.
  • BOMGREN P, EINARSSON S & JÖNSSON AC, 1998. Similarities and differences in oxyticopeptic cell ultrastructure of one marine teleost, Gadus morhua and one freshwater teleost, Oncorhynchus mykiss, during basal and histamine stimulated phases of acid secretion. Fish Physiology and Biochemistry, 18, 285-296.
  • BURRIN DG, STOLL B & GUAN X, 2003. Glucagon-like peptide 2 function in domestic animals. Domestic Animal Endocrinology, 24, 103-122.
  • CIMINI V, NOORDER S, NARDINI V, 1989. Peptides of the gastrointestinal tract of the dogfish (Scyliorhinus stellaris). 8th International Symp On Morphological Sciences, 146-57.
  • D’ESTE L, WIMALOWANSA SJ & RENDA TG, 1995. Amylin-immunoreactivity is co-stored in a serotonin cell subpopulation of the vertebrate stomach and duodenum. Archıves of Histology and Cytology, 58(5), 537-47.
  • DEZFULI BS, ARRIGHI S, DOMENEGHINI C & BOSI G, 2000. Immunohistochemical detection of neuromodulators in the intestine of Salmo trutta L. naturally infected with Cyathocephalus truncatus Pallas (Cestoda). Journal of Fish Diseases, 23, 265-273.
  • DEZFULI BS, PIRONI F, GIARI L, DOMENEGHINI C, BOSI G, 2002. Effect of Pomphorynchus laevis (Acanthocephala) on putative neuromodulator in the intestine of naturally infected Salmo trutta. Diseases of Aquatic Organs, 51, 27- 35.
  • DEZFULI BS, GIARI L, ARRIGHI S, DOMENEGHINI C & BOSI G, 2003. Influence of enteric helminths on the distribution of intestinal endocrine cells belonging to the diffuse endocrine system in Brown Trout, Salmo trutta L. Journal of Fish Diseases, 26, 155-166.
  • DOMENEGHINI C, RADAELLI G, ARRIGHI S, MASCARELLO F & VEGGETTİ A, 2000. Neurotransmitters and putative neuromodulators in the gut of Anguilla anguilla (L.) localizations in the enteric nervous and endocrine systems. Europen Journal of Histochemistry, 44, 295-306.
  • EINARSSON S & DAVIES DS, 1996. On the localization and ultrastructure of pepsinogen, trypsinogen, chymotrypsinogen secreting cells in the Atlantic Salmon, Salmo salar L. Comparative Biochemistry and Physiology Part B, 114, 295-301.
  • ELLIS AE, 1985. Eosinophilic granular cells (EGC) and histamine responses to toxins in Rainbow Trout. Developmental and Comparative Immunology, 9, 251-260.
  • FAIRGRIEVE WT, MYERS MS, HARDY RW & DONG FM, 1994. Gastric abnormalities in Rainbow Trout (Oncorhynchus mykiss) fed amine supplemented diets or chicken gizzard erosion positive fish meal. Aquaculture, 127, 219-232.
  • GIROLAMO P, LUCINI C, VEGA JA, REOZZI G, COPPOLA L & CASTALDO L, 1999. Co-Localization of trk neurotrophin receptors and regulatory peptides in the endocrine cells of the teleostean stomach. The Anatomical Record, 256, 219- 226.
  • HALPERT AG, OLMSTEAD MC, BENINGER RJ, 2002. Mechanisms and abuse liability of the anti-histamine dimenhydrinate. Neuroscience Biobehaviour Review, 26, 61-7.
  • HIMICK BA & PETER RE, 1994. CCK/Gastrin like ımmunreactivity in brain and gut, and CCK suppression of feeding in gold fish. Intergrative and Comparative Physiology, 267, 841-851.
  • HSU SM, RAINE L, FANGER H, 1981. Use of avidin-biotin-peroxidase complex (ABC) in immunoperoxidase techniques: a comparison between ABC and unlabeled antibody (PAP) procedures. The Journal of Histochemistry and Cytochemistry, 29, 577-580.
  • JÖNSSON AC, HOLMGREN S, HOLSTEIN B, 1987. Gastrin/CCK-like ımmunoreactivity in endocrine cells and nerves in the gastrointestinal tract of cod, Gadus morhua and the effect of peptides of Gastrin/CCK family on Cod gastrointestinal smooth muscle. General and Comparative Endocrinology, 66, 190-202.
  • KILIAAN AJ, SCHOLTEN G & GRAOT JA, 1997. Exocytotic release of vasoactive intestinal polypeptide and serotonin from mucosal nerve fibres and endocrine and the Tilapia (Oreochromis mossambicus): an ultrastructural study. Histochemical Journal, 29, 45-51.
  • KIM JB, GADSBOLL V, WHITTAKER J, BARTON BA & CONLON JM, 2000. Gastroenteropancreatic hormones (insulin, glucagon, somatostatin, and multiple forms of PYY) from the Pallid sturgeor, Scarphirhynchus albus (Acipenseriformes). General and Comparative Endocrinology, 120, 353-363.
  • KÖSE S & HALL G, 2000. Modification of a colorimetric method for histamine analysis in fish meal. Food Research International, 33, 839-845.
  • LEHNINGER, AL, NELSON, DL, COX, MM, 1993. Principles of Biochemistry. Worth Publishers, New York, pp. 1013.
  • LIU Y, TYTGAT GNJ, XIAO SD, TEN-KATE FJW, 2003. Gastric endocrine cells. Chinese Journal of Digestive Diseases, 4, 160-167.
  • LUCINI C, GIROLAMA P, MARUCCIO L, LAMANNA C, CASTALDO L. & VEGA JA, 1999. Trk-neurotrophin receptor-like immunreactivity in the gut of teleost species. Cell and Tissue Research, 262, 323-30.
  • MAAKE C, KAUFMANN C & REINECKE M, 2001. Ontogeny of neurohormonal peptides, serotonin and nitric oxide synthase in the gastrointestinal neuroendocrine system of the axolotl (Ambystoma mexicanum): an immunohistochemical analysis. General and Comparative Endocrinology, 121, 74-83.
  • MATHEWS CK, VAN HOLDE KE, 1996. Biochemistry. The Benjamin/Cummings Publishing Company, New York, 1159.
  • PALEOLOGOS EK, SAVVAIDIS IN & KONTOMINEAS MG, 2004. Biogenic amines formation and its relation to microbiological and sensory attributes in ice-stored whole gutted and filleted mediterranean Sea Bass (Dicentrarchus labrax). Food Microbiology, 21, 549-557.
  • PAN QS, FANG ZP, & HUANG FJ, 2000a. Identification, localization and morphology of APUD cells in gastroenteropancreatic system of stomach-containing teleosts. World Journal of Gastroenterology, 6, 842-847.
  • PAN QS, FANG ZP, & ZHAO YX, 2000b. Immunocytochemical identification and localization of APUD cells in the gut of seven stomachless teleost fishes. World Journal of Gastroenterology, 6, 96-101.
  • RAJJO IM, VIGNA SR & CRIM JW, 1988. Cholecystokinin immunreactivity in the digestive tract of Bowfin (Amia calva), Bluegill (Lepomis macrochirus) and Bulfrog (Rana Catesbeina). General and Comparative Endocrinolology, 70, 133-44.
  • REIFEL CW, 1988. Endocrine cells in the gastrointestinal tract of a stomachless teleostean fish. Anatomia Anz, 167, 259-63.
  • REITE OB, 1997. Mast cells eosinophilic granule cells of salmonids staining properties and response to noxious agents. Fish and Shellfish Immunology, 7, 567-584.
  • RONNESTAD I, TONHEIM SK, FYHN HJ, ROJAS-GARCIA CR, KAMISAKA Y, KOVEN W, FINN R N, TERJESEN BF, BARR Y & CONCEICAO LEC, 2003. The supply of amino acids during early feeding stages of marine fish larvae; a review of recent findings. Aquacultura, 227, 147-164.
  • SCHEUERMANN DW, ADRIAENSEN D, TIMMERMANS JP & DE GROODT- LASSEEL MH, 1991. Immunohistochemical localization of polypeptide hormones in pancreatic endocrine cells of a dipnoan fish, Protopterus aethiopicus. Acta Histochemical, 91, 185-92.
  • TELATAR H, ŞIMŞEK H, 1993. Gastroenteroloji. Hacettepe üniversitesi tıp fakültesi iç hastalıkları ABD gastroenteroloji: ünitesi Hekimler Yayın Birliği, Ankara, pp. 551.
  • VIGNA SR, FISCHER BL, MORGAN JLM, ROSENQUIST GL, 1985. Distribution and molecular heterogenity of cholecystokinin like ımmunreactive peptides in the brain and gut of the Rainbow Trout, Salmo gairdneri. Comparative. Biochemistry Physiology, 82, 143-46.
  • YANAI K, SON LZ, ENDOU M, SAKURAI E, NAKAGAWASA, O, TADANO T, KISARA K, INOUE I, WATANABE T, 1998. behavioural characterization and amounts of brain monoamines and their metabolites in mice lacking histamine h1 receptors. Neuroscience, 87, 479-87.
  • YOUSON JH, AL-MAHROUKI AA, NAUMOVSKI D & CONLON JM, 2001. The endocrine cells in the gastroenteropancreatic system of the Bowfin, Amia calva L: an ımmunohistochemical, ultrastructural and immunohistochemical analysis. Journal of Morphology, 250, 208-24.
There are 40 citations in total.

Details

Primary Language English
Subjects Structural Biology
Journal Section Makaleler
Authors

Nurgül Şenol This is me

Kenan Çınar This is me

Publication Date June 1, 2006
Published in Issue Year 2006 Volume: 1 Issue: 1

Cite

IEEE N. Şenol and K. Çınar, “IMMUNOHISTOCHEMICAL LOCALIZATION OF CHOLECYSTOKININ AND HISTAMINE IN GASTROINTESTINAL TRACT IN FLOWER FISH”, Süleyman Demirel University Faculty of Arts and Science Journal of Science, vol. 1, no. 1, pp. 26–34, 2006.