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2008 | 64 | 04B |

Tytuł artykułu

Czynnik wzrostu nerwow - jego ekspresja i udzial w funkcjonowaniu narzadow rodnych samic

Autorzy

Warianty tytułu

EN
Nerve growth factor - its expression and participation in the functioning of reproductive organs in females

Języki publikacji

PL

Abstrakty

EN
The nerve growth factor (NGF) is a polypeptide belonging to the family of trophic factors, influencing not only the population of neurons of both the central and peripheral nervous system, but also cells of the immunological and endocrine systems. The expression of NGF and/or its two types of membrane receptors (NTRK1 and TFRSF1B) was found in cells of ovaries, uterus, oviduct, fetal membranes and placenta. NGF is an important element of the regulation of the ovary functioning in sexually immature and mature females. NGF contributes to the development of the innervation of ovarian structures, stimulates proliferation of steroidogenic cells and synthesis of steroids, as well as participates in the maturation of oocytes and in ovulatory process. Moreover, NGF and neurotransmitters released by adrenergic fibres can play an important role in the formation and/or the course of polycystic ovary syndrome. During the estrous cycle, besides pregnancy NGF stimulates proliferation of uterine cells which lead to the increase of the mass of the uterus. Decreased in the middle and late period of the pregnancy, the expression of this factor in the uterus contributes to neurodegenerative changes whose effect is the reduction of contractions of the uterus. In turn the augmentation of NGF production after parturition leads to the restoration of innervation in this organ. The implication of NGF and its receptors in the functioning of the oviduct, fetal membranes and placenta has not yet been recognized.

Wydawca

-

Rocznik

Tom

64

Numer

04B

Opis fizyczny

s.520-524,bibliogr.

Twórcy

autor
  • Instytut Rozrodu Zwierzat i Badan Zywnosci PAN, ul.Tuwima 10, 10-747 Olsztyn
autor

Bibliografia

  • 1. Akasu F., Tagawa Y., Shimada H.: Promoting effects of the combined administration of nerve growth factor (NGF) and human chorionie gonadotropin (hCG) on the ovaries and uteri of immature mice. Acta Obstet. Gynecol. Jpn. 1970, 17, 179-185.
  • 2. Barboni B., Mattioli M., Gioia L., Turlani M., Capacchietti G., Berardinelli P., Bernabo N.: Preovulatory rise of NGF in ovine follicular fluid: possible involvement in the control of oocyte maturation. Microsc. Res. Tech. 2002, 15, 516-521.
  • 3. Bjorling D. E., Beckman M., Clayton K., Wang Z.-Y.: Modulation of nerve growth factor in peripheral organs by estrogen and progesterone. Neuroscience 2002, 1, 155-167.
  • 4. Brauer M. M., Shockley K. P., Chávez R., Richeri A., Cowen T., Crutcher K. A.: The role of NGF in pregnancy degeneration and regeneration of sympathetic nerves in the guinea pig uterus. J. Autonomic Nervous System 2000, 79, 19-27.
  • 5. Dechant G., Barde Y. A.: Signaling through the neurotrophin receptor p75NTR. Curr. Opin. Neurobiol. 1997, 7, 413-418.
  • 6. Dissen G. A., Hill D. F., Costa M. E., les Dees C. W., Lara H. E., Ojeda S. R.: A role for trkA nerve growth factor receptors in mammalian ovulation. Endocrinology 1996, 137, 198-209.
  • 7. Dissen G. A., Hill D. F., Costa M. E., Ma Y. J., Ojeda S. R.: Nerve growth factor receptors in the peripubertal rat ovary. Mol. Endocrinol. 1991, 5, 1642-1650.
  • 8. Dissen G. A., Parrott J. A., Skinner M. K., Hill D. F., Costa M. E., Ojeda S. R.: Direct effects of nerve growth factor in thecal cells from antral ovarian follicles. Endocrinology 2000, 141, 4736-4750.
  • 9. Espley L. L., Lipner H.: Physiology Reproduction, Raven Press, New York 1994, s. 725.
  • 10. Horigome K., Pryor J. C., Bullock E. D., Johnson Jr. E. M.: Mediator release from mast cells by nerve growth factor. J. Biol. Chem. 1993, 268, 14881-14887.
  • 11. Jana B., Kozłowska A., Wojtkiewicz J., Majewski M.: Immunochemiczna lokalizacja NGF w jajnikach świń. XLI Symp. Pol. Tow. Histochem. Cytochem. Stare Jabłonki 2006, s. 42.
  • 12. Kohn J., Aloyz R. S., Toma J. G., Haak-Frendscho M., Miller F. D.: Functionally antagonistic interactions between the TrkA and p75 neurotrophin receptors regulate sympathetic neuron growth and target innervation. J. Neurosci. 1999, 19, 5393-5408.
  • 13. Kozłowska A., Kucharski J., Wojtkiewicz J., Majewski M., Jana B.: Lokalizacja receptorów NGF w jajnikach świń. XLI Symp. Pol. Tow. Histochem. Cytochem. Stare Jabłonki 2006, s. 61.
  • 14. Lara H. E., Disen G. A., Leyton V., Paredes A., Fuenzalida H., Fidler J. L.: An increased intraovarian synthesis of nerve growth factor and its low affinity receptor is a principal component of steroid-induced polycystic ovary in the rat. Endocrinology 2000, 41, 1059-1072.
  • 15. Lara H. E., Ferruz J. L., Luza S., Bustamante D. A., Borges Y., Ojeda S. R.: Activation of ovarian sympathetic nerves in polycystic ovary syndrome. Endocrinology 1993, 133, 2690-2695.
  • 16. Lara H. E., McDonald J. K., Ojeda S. R.: Involvement of nerve growth factor in female sexual development. Endocrinology 1990, 126, 364-375.
  • 17. Levanti M. B., Germaná A., Abbate F., Montalbano G., Vega J. A., Germaná G.: TrkA and p75NTRI in the ovary of adult cow and pig. J. Anat. 2005, 207, 93-96.
  • 18. Lobos E., Gebhard C., Kluge A., Spanel-Borowski K.: Expression of nerve growth factor (NGF) isoforms in the rat uterus during pregnancy: accumulation of precursor proNGF. Endocrinology 2005, 146, 1922-1929.
  • 19. Mattioli M., Barboni B., Gioia L., Lucidi P.: Nerve growth factor production in sheep antral follicles. Domest. Anim. Endocrinol. 1999, 17, 361-371.
  • 20. Mione M. C., Cavanagh J. F. R., Lincoln J., Milner P., Burnstock G.: Pregnancy reduces noradrenaline but not neuropeptide levels in the uterine artery of the guinea-pig. Cell Tissue Res. 1990, 159, 503-509.
  • 21. Missale C., Boroni F., Sigala S., Zanelatto A., Dal Toso R., Balsari A., Spano P.: Nerve growth factor directs differentiation of the bipotential cell line HG-3 into the mammotroph phenotype. Endocrinology 1994, 135, 290-298.
  • 22. Ojeda S. R., Dissen G. A., Junier M. P.: Neurotrophic factors and female sexual development. Front Neuroendocrinol. 1992, 13, 120-162.
  • 23. Ojeda S. R., Romero C., Tapia V., Dissen G. A.: Neurotrophic and cell-cell dependent control of early follicular development. Mol. Cell. Endocrinol. 2000, 163, 67-71.
  • 24. Otten U., Ehrard P., Peck R.: Nerve growth factor induces growth and differentiation of human B lymphocytes. Proc. Natl. Acad. Sci. USA 1989, 86, 10059-10063.
  • 25. Owmen C., Stjernquist M.: Handbook of Chemical Neuroanatomy. New York, Science Publisher 1988, s. 445.
  • 26. Polak M., Scharfmann R., Seilheimer B., Eisenbarth G., Dressler D., Verma I. M.: Nerve growth factor induces neuron-like differentiation of an insulin secreting pancreating beta cell line. Prot. Natl. Acad. Sci. USA 1993, 80, 5781-5785.
  • 27. Ren L. Q., Medan M., Weng Q., Jin W., Li C. M., Watanabe G., Taya K.: Immunolocalization of nerve growth factor (NGF) and its receptors (TrkA and p75LNGFR) in the reproductive organs of Shiba goats. J. Reprod. Dev. 2005, 51, 339-404.
  • 28. Romero C., Parades A., Dissen G. A., Ojeda S. R.: Nerve growth factor induces the expression of functional FSH receptors in newly formed follicles of the rat ovary. Endocrinology 2002, 143, 1485-1494.
  • 29. Salas C., Julio-Pieper M., Valladares M., Pommer R., Vega M., Mastronardi C., Kerr B., Ojeda S. R., Lara H. E., Romero C.: Nerve growth factor-dependent activation of trkA receptors in the human ovary results in synthesis of FSH receptors and estrogen secretion. J. Clin. Endocrinol. Metab. 2006, 14, 2396-2403.
  • 30. Seifer D. B., Feng B., Shelden R. M.: Immunocytochemical evidence for the presence and location of the neutrophin-Trk receptor family in adult human preovulatory ovarian follicles. Am. J. Obstet. Gynecol. 2005, 194, 1129-1136.
  • 31. Shi Z., Arai K. Y., Jin W., Weng Q., Watanabe G., Suzuki A. K., Taya K.: Expression of nerve growth factor and its receptors NTRK1 and TNFRSF1 is regulated by estrogen and progesterone in the uteri of golden hamsters. Biol. Reprod. 2006, 74, 850-856.
  • 32. Shi Z., Jin W., Watanabe G., Suzuki A. K., Takahashi S., Taya K.: Expression of nerve growth factor (NGF), and its receptors trkA and p75 in ovaries of the cyclic golden hamster (Mesocricetus auratus) and the regulation their production by luteinizing hormone. J. Reprod. Dev. 2004, 50, 605-611.
  • 33. Toti P., Ciarmela P., Floria P., Volpi N., Occini R., Petraglia F.: Human placenta and feral membranes express nerve growth factor mRNA and protein. J. Endocrinol. Invest. 2006, 29, 337-341.
  • 34. Varol F. G., Duchemin A. M., Neff N. H., Hadjiconstantinou M.: Nerve growth factor (NGF) and NGF mRNA change in rat uterus during pregnancy. Neurosci. Lett. 2000, 294, 58-62.
  • 35. Watson A. J., Hogan A., Hahnel A., Wiemer K. E., Schultz G. A.: Expression of growth factor ligand and receptor genes in the preimplantation bovine embryo. Mol. Reprod. Dev. 1992, 31, 87-95.
  • 36. Watson A. J., Watson P. H., Arcellana-Panllio M., Warnes D., Walker S. K., Schultz G. A., Armstrong D. T., Seamark R.: A growth factor phenotype map for ovine preimplantation development. Biol. Reprod. 1994, 50, 725-733.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-312fc525-aae7-48e1-bc22-c7579c500db4
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