Melatonin administration provokes the activity of dendritic reticular cells in the seminal vesicle of Soay ram during the non-breeding season.

Hanan H Abd-Elhafeez, A H S Hassan, Manal T Hussein
Author Information
  1. Hanan H Abd-Elhafeez: Department of Anatomy, Embryology and Histology, Faculty of Veterinary Medicine, Assiut University, Assiut, 71526, Egypt. ORCID
  2. A H S Hassan: Department of Anatomy, Embryology and Histology, Faculty of Veterinary Medicine, Assiut University, Assiut, 71526, Egypt.
  3. Manal T Hussein: Department of Anatomy, Embryology and Histology, Faculty of Veterinary Medicine, Assiut University, Assiut, 71526, Egypt. manal.hussein@aun.edu.eg. ORCID

Abstract

Dendritic cells (DCs) are innate immune cells which engulf, process and present antigens to the naïve T-lymphocyte cells. However, little is known about the effect of melatonin on the DCs. The present study aimed to investigate the morphology and distribution of the DCs by transmission electron microscopy and Immunohistochemistry after melatonin administration. A total of 8 out of 15 adult ram was randomly selected to receive the melatonin implant and the remaining 7 animals received melatonin free implants. DCs showed positive immunoreactivity for CD117, S-100 protein and CD34. There is an obvious increase in the number of the positive immunoreactive cells to CD3, estrogen receptor alpha and progesterone in the treated groups. The expression of CD56 and MHCII in the DCs was abundant in the treated groups. The ultrastructure study revealed that melatonin exerts a stimulatory effect on the DCs which was associated with increment in the secretory activity of DCs. The secretory activity demarcated by an obvious increase in the number of mitochondria, cisternae of rER and a well-developed Golgi apparatus. The endosomal- lysosomal system was more developed in the treated groups. A rod-shaped Birbeck granule was demonstrated in the cytoplasm of the melatonin treated group. DCs were observed in a close contact to telocytes, T-Lymphocytes, nerve fibers and blood vessels. Taken together, melatonin administration elicits a stimulatory action on the DCs and macrophages through increasing the size, the number and the endosomal compartments which may correlate to increased immunity.

References

  1. Microsc Microanal. 2019 Aug;25(4):1052-1060 [PMID: 31210121]
  2. World J Gastroenterol. 2011 Sep 14;17(34):3888-98 [PMID: 22025877]
  3. Protoplasma. 2020 Mar;257(2):353-369 [PMID: 31637525]
  4. Eur J Immunol. 1999 Dec;29(12):3815-25 [PMID: 10601989]
  5. J Pineal Res. 2013 Sep;55(2):103-20 [PMID: 23889107]
  6. Cell. 2001 Aug 10;106(3):259-62 [PMID: 11509173]
  7. Blood. 2002 Dec 15;100(13):4512-20 [PMID: 12393628]
  8. Commun Integr Biol. 2014 Dec 23;7(6):e994969 [PMID: 26478765]
  9. J Cell Biol. 1965 Oct;27(1):1-24 [PMID: 5857256]
  10. J Morphol. 2016 Feb;277(2):231-43 [PMID: 26611365]
  11. J Exp Med. 1999 Feb 15;189(4):611-4 [PMID: 9989975]
  12. Curr Neuropharmacol. 2010 Sep;8(3):228-42 [PMID: 21358973]
  13. Andrologia. 1990;22 Suppl 1:185-92 [PMID: 2132069]
  14. Microsc Microanal. 2019 Dec;25(6):1498-1508 [PMID: 31718724]
  15. Curr Opin Immunol. 2010 Feb;22(1):109-17 [PMID: 20171863]
  16. Nature. 1998 Mar 19;392(6673):245-52 [PMID: 9521319]
  17. J Immunother. 2008 Nov-Dec;31(9):793-805 [PMID: 18833008]
  18. Microb Ecol. 2010 Feb;59(2):400-14 [PMID: 20020121]
  19. Nat Rev Mol Cell Biol. 2009 Sep;10(9):597-608 [PMID: 19696797]
  20. Stem Cells. 2014 Jun;32(6):1380-9 [PMID: 24497003]
  21. J Cell Mol Med. 2013 Aug;17(8):1016-24 [PMID: 23991685]
  22. Vet Immunol Immunopathol. 1999 Aug 2;69(2-4):145-64 [PMID: 10507302]
  23. J Invest Dermatol. 2012 Mar;132(3 Pt 2):872-81 [PMID: 22217741]
  24. Curr Opin Immunol. 1997 Feb;9(1):10-6 [PMID: 9039784]
  25. Kidney Int. 2008 Jul;74(1):37-46 [PMID: 18368027]
  26. Arkh Patol. 1990;52(1):71-8 [PMID: 2186722]
  27. Sci Rep. 2020 Jun 23;10(1):10154 [PMID: 32576871]
  28. J Pineal Res. 2013 Apr;54(3):245-57 [PMID: 22998574]
  29. J Pineal Res. 2009 Sep;47(2):109-126 [PMID: 19573038]
  30. Vet Pathol. 2013 Nov;50(6):1099-108 [PMID: 23528943]
  31. Mol Reprod Dev. 2019 Jul;86(7):835-846 [PMID: 31081144]
  32. Br J Pharmacol. 2018 Aug;175(16):3263-3280 [PMID: 28707298]
  33. Ann N Y Acad Sci. 2010 Jan;1183:104-22 [PMID: 20146711]
  34. Immunology. 1993 Jan;78(1):132-41 [PMID: 8436399]
  35. J Immunol. 2004 Feb 1;172(3):1426-36 [PMID: 14734718]
  36. Nat Rev Immunol. 2003 Jan;3(1):23-35 [PMID: 12511873]
  37. Immunol Rev. 1997 Apr;156:25-37 [PMID: 9176697]
  38. Microsc Microanal. 2019 Oct;25(5):1283-1292 [PMID: 31583991]
  39. Immunity. 2016 Oct 18;45(4):719-736 [PMID: 27760337]
  40. Asian J Androl. 2001 Dec;3(4):251-8 [PMID: 11753468]
  41. Neuro Endocrinol Lett. 1999;20(6):343-349 [PMID: 11458197]
  42. Invest Ophthalmol Vis Sci. 2005 Dec;46(12):4489-94 [PMID: 16303939]
  43. Blood. 2010 Jan 14;115(2):238-46 [PMID: 19880499]
  44. Nat Immunol. 2012 Dec;13(12):1145-54 [PMID: 23160217]
  45. J Cell Mol Med. 2005 Jul-Sep;9(3):714-30 [PMID: 16202219]
  46. J Acupunct Meridian Stud. 2019 Feb;12(1):20-24 [PMID: 30684675]
  47. Curr Opin Cell Biol. 2013 Aug;25(4):495-505 [PMID: 23726022]
  48. Int J Exp Pathol. 2006 Apr;87(2):81-7 [PMID: 16623752]
  49. Clin Vaccine Immunol. 2012 Oct;19(10):1583-92 [PMID: 22855393]
  50. Science. 2000 Apr 21;288(5465):522-7 [PMID: 10775112]
  51. Curr Opin Immunol. 2006 Feb;18(1):49-53 [PMID: 16338128]
  52. J Exp Med. 1994 Apr 1;179(4):1109-18 [PMID: 8145033]
  53. Immunol Res. 2003;28(2):93-107 [PMID: 14610287]
  54. Immunity. 2007 Jun;26(6):741-50 [PMID: 17582346]
  55. Eur J Immunol. 2003 Feb;33(2):512-21 [PMID: 12645950]
  56. Microsc Microanal. 2020 Oct;26(5):1035-1052 [PMID: 32819453]
  57. Histol Histopathol. 2012 Aug;27(8):1067-78 [PMID: 22763879]
  58. Eur J Immunol. 2007 Jun;37(6):1453-62 [PMID: 17474148]
  59. J Reprod Fertil. 1985 Jan;73(1):241-53 [PMID: 3918164]
  60. J Neuroimmunol. 2003 Nov;144(1-2):91-9 [PMID: 14597102]
  61. Nat Immunol. 2001 Aug;2(8):718-24 [PMID: 11477408]
  62. Cell Immunol. 2015 Apr;294(2):63-9 [PMID: 25682174]
  63. Thorax. 2008 Feb;63(2):108-14 [PMID: 17875567]
  64. Dev Biol. 2019 Oct 1;454(1):29-43 [PMID: 31233738]
  65. Cells Tissues Organs. 2017;203(1):29-54 [PMID: 27802428]
  66. Exp Dermatol. 2015 Jan;24(1):35-41 [PMID: 25363560]
  67. Andrologia. 2000 Mar;32(2):107-14 [PMID: 10755193]
  68. Nat Rev Immunol. 2005 Dec;5(12):953-64 [PMID: 16322748]
  69. Br J Pharmacol. 2008 Jul;154(6):1182-95 [PMID: 18493248]
  70. Sci Rep. 2019 Mar 14;9(1):4507 [PMID: 30872789]
  71. Endocrine. 2005 Jul;27(2):189-200 [PMID: 16217132]
  72. Cell Mol Life Sci. 2003 Oct;60(10):2272-8 [PMID: 14618273]
  73. Mucosal Immunol. 2010 Sep;3(5):496-505 [PMID: 20505661]
  74. Int J Mol Sci. 2017 Mar 19;18(3): [PMID: 28335493]
  75. J Cell Biol. 1963 Apr;17:208-12 [PMID: 13986422]
  76. Reprod Domest Anim. 2010 Jun;45(3):425-32 [PMID: 18954380]
  77. Cells Tissues Organs. 2017;203(5):295-315 [PMID: 28030857]
  78. Front Endocrinol (Lausanne). 2013 Aug 15;4:100 [PMID: 23966979]

MeSH Term

Animals
Dendritic Cells
Dendritic Cells, Follicular
Lymphocytes
Macrophages
Male
Melatonin
Seminal Vesicles
Sheep
T-Lymphocytes
Telocytes

Chemicals

Melatonin

Word Cloud

Created with Highcharts 10.0.0DCsmelatonincellstreatedadministrationnumbergroupsactivitypresenteffectstudyrampositiveobviousincreasestimulatorysecretoryDendriticinnateimmuneengulfprocessantigensnaïveT-lymphocyteHoweverlittleknownaimedinvestigatemorphologydistributiontransmissionelectronmicroscopyImmunohistochemistrytotal815adultrandomlyselectedreceiveimplantremaining7animalsreceivedfreeimplantsshowedimmunoreactivityCD117S-100proteinCD34immunoreactiveCD3estrogenreceptoralphaprogesteroneexpressionCD56MHCIIabundantultrastructurerevealedexertsassociatedincrementdemarcatedmitochondriacisternaerERwell-developedGolgiapparatusendosomal-lysosomalsystemdevelopedrod-shapedBirbeckgranuledemonstratedcytoplasmgroupobservedclosecontacttelocytesT-LymphocytesnervefibersbloodvesselsTakentogetherelicitsactionmacrophagesincreasingsizeendosomalcompartmentsmaycorrelateincreasedimmunityMelatoninprovokesdendriticreticularseminalvesicleSoaynon-breedingseason

Similar Articles

Cited By