Literature DB >> 10864788

Difference in localization of eosinophils and mast cells in the bovine ovary.

I Reibiger1, K Spanel-Borowski.   

Abstract

The bovine ovary contains a considerable number of leucocytes which can be located with an antibody against the CD18 molecule. In the present study, subtyping and cell counting were carried out on histological sections stained with Sirius red for eosinophils and with toluidine blue for mast cells. The CD18(+) cells were identified immunohistologically. Eosinophils and mast cells contributed considerably to the CD18(+) pool. The number of eosinophils in the corpus luteum increased rapidly in early development to approximately 90% of the CD18(+) cells, and decreased to 30% during secretion and to 10% during regression. Mast cells were not detectable in the follicles, the corpus luteum and the periphery of the cortex, but were observed in the interstitial cortical stroma and the medulla. The number of mast cells in these regions, which corresponded to 60-76% of the CD18(+) cells, did not change significantly throughout the oestrous cycle. It is concluded that eosinophils are selectively recruited at the periovulatory period and that mast cells are unevenly distributed.

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Year:  2000        PMID: 10864788

Source DB:  PubMed          Journal:  J Reprod Fertil        ISSN: 0022-4251


  9 in total

1.  Mast cell-directed recruitment of MHC class II positive cells and eosinophils towards mesenteric lymphatic vessels in adulthood and elderly.

Authors:  Victor Chatterjee; Anatoliy A Gashev
Journal:  Lymphat Res Biol       Date:  2014-03       Impact factor: 2.589

Review 2.  History, insights, and future perspectives on studies into luteal function in cattle.

Authors:  Cecily V Bishop; Vimal Selvaraj; David H Townson; Joy L Pate; Milo C Wiltbank
Journal:  J Anim Sci       Date:  2022-07-01       Impact factor: 3.338

3.  Distribution of eosinophil granulocytes and mast cells in the reproductive tract of female goats in the preimplantation phase.

Authors:  Turan Karaca; Mecit Yörük; Sema Uslu; Yunus Cetin; Barıs Atalay Uslu
Journal:  Vet Res Commun       Date:  2009-01-31       Impact factor: 2.459

4.  Mast cells as novel mediators of reproductive processes.

Authors:  Katja Woidacki; Federico Jensen; Ana C Zenclussen
Journal:  Front Immunol       Date:  2013-02-14       Impact factor: 7.561

5.  Evidence that polymorphonuclear neutrophils infiltrate into the developing corpus luteum and promote angiogenesis with interleukin-8 in the cow.

Authors:  Sineenard Jiemtaweeboon; Koumei Shirasuna; Akane Nitta; Ayumi Kobayashi; Hans-Joachim Schuberth; Takashi Shimizu; Akio Miyamoto
Journal:  Reprod Biol Endocrinol       Date:  2011-06-08       Impact factor: 5.211

6.  Contribution of the immune system to follicle differentiation, ovulation and early corpus luteum formation.

Authors:  Noof Abdulrahman; Trudee Fair
Journal:  Anim Reprod       Date:  2019-10-23       Impact factor: 1.807

Review 7.  Chemokines in the corpus luteum: implications of leukocyte chemotaxis.

Authors:  David H Townson; Amy R Liptak
Journal:  Reprod Biol Endocrinol       Date:  2003-11-10       Impact factor: 5.211

8.  Description of the Follicular Fluid Cytokine and Hormone Profiles in Human Physiological Natural Cycles.

Authors:  Marie-Pierre Piccinni; Rossella Vicenti; Federica Logiodice; Raffaella Fabbri; Ornela Kullolli; Marco Pallecchi; Roberto Paradisi; Giovanna Danza; Maria Macciocca; Letizia Lombardelli; Renato Seracchioli
Journal:  J Clin Endocrinol Metab       Date:  2021-01-23       Impact factor: 5.958

Review 9.  New Aspects of Corpus Luteum Regulation in Physiological and Pathological Conditions: Involvement of Adipokines and Neuropeptides.

Authors:  Ewa Mlyczyńska; Marta Kieżun; Patrycja Kurowska; Monika Dawid; Karolina Pich; Natalia Respekta; Mathilde Daudon; Edyta Rytelewska; Kamil Dobrzyń; Barbara Kamińska; Tadeusz Kamiński; Nina Smolińska; Joelle Dupont; Agnieszka Rak
Journal:  Cells       Date:  2022-03-10       Impact factor: 6.600

  9 in total

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